Harbin completed the first round of nucleic acid testing for all staff on September 23rd, and the vaccination was suspended for three days.

  Cctv news(Reporter Li Wenxue): According to the latest news from the Health and Health Commission of Heilongjiang Province, from 0: 00 to 12: 00 on September 22nd, there were 5 new confirmed cases in COVID-19 (4 cases in Bayan County, Harbin, and 1 case in nangang district, Harbin). As of 12: 00 on September 22, there are 6 confirmed cases imported from abroad and 8 confirmed cases locally in the province.

  On September 22nd, Announcement No.29 of Harbin Municipal Command for Dealing with Pneumonia in novel coronavirus was released. In order to find and control the source of infection in time and effectively, and resolutely block the spread of the epidemic, according to the actual situation of epidemic prevention and control in Harbin and the expert’s judgment, the headquarters of Harbin’s response to novel coronavirus’s pneumonia epidemic decided that "three districts and one county" in nangang district, Daoli District, Songbei District and Bayan County should complete the first round of nucleic acid detection before 24: 00 on September 22, and other districts and counties (cities) should complete the first round before 24: 00 on September 23.

  In order to ensure full coverage and no omission of nucleic acid detection, Longjiang health code assignment management will be implemented for nucleic acid detection, and the health code will be adjusted to "yellow code" for those who fail to carry out nucleic acid detection according to the requirements of epidemic prevention and control, and will be adjusted to "green code" when the detection is completed and the result is negative.

  In order to concentrate on doing a good job in nucleic acid screening for all staff and quickly cut off the source of epidemic spread, from now on, the vaccination work in COVID-19 in the city will be suspended for 3 days.

Great achievements have been made in various fields. China’s high-quality development has "broken the waves and moved forward"

CCTV News:On April 24th, the latest news of China Aerospace was released, and the Shenzhou-18 manned spacecraft was planned to be launched at 20: 59 on April 25th. For more than 60 years, from "two bombs and one satellite" to "Chang ‘e" to explore the moon, "Zhu Rong" to explore the fire and "Tiangong" to roam the stars … … China Aerospace always dreams of the stars and the sea, and will fly to a wider deep space this year.

China space accelerates exploration to new heights.

The launch window of Shenzhou-18 manned spacecraft confirmed that astronauts appeared in groups.

On April 24th, the press conference of Shenzhou-18 manned mission was held in Jiuquan Satellite Launch Center. It is planned to launch the Shenzhou-18 manned spacecraft at 20: 59 on April 25th, and three astronauts will make a collective appearance.

At the press conference, a spokesman for China’s manned spaceflight project introduced the relevant situation of this mission. At 11 noon, the flight crew of Shenzhou 18 met with Chinese and foreign journalists in Wentian Pavilion. The crew consisted of astronauts Ye Guangfu, Li Cong and Li Guangsu. Commander Ye Guangfu has carried out the manned mission of Shenzhou XIII, and Li Cong and Li Guangsu are the third batch of astronauts in China, both of whom are flying for the first time.

Shenzhou 17, which is carrying out its mission in the space station, is in orbit to watch the press conference and press conference of Shenzhou 18 manned mission.

At present, the state of the space station assembly and all equipment are working normally, the product quality of the Shenzhou-18 rocket assembly is controlled, the ground system facilities and equipment are running stably, and all preparations are ready before launch.

China’s manned moon landing is being developed and built as planned.

April 24 is the ninth "China Aerospace Day" with the theme of "Looking at the vast expanse of the sky and working together with the stars".

Lin Xiqiang, deputy director of the China Manned Space Engineering Office, said that at present, major flight products such as the Long March 10 carrier rocket, the Dreamboat manned spacecraft, the lunar lander, and the moon landing suit have all completed the program development work, and the production of prototype products and various tests are being carried out in an all-round way. The construction of Wenchang manned lunar exploration launch site has been fully implemented.

In 2024, China Aerospace is expected to launch about 100 missions, and the fourth phase of the lunar exploration project, Chang ‘e-6 mission, Shenzhou-18 manned mission and Tianzhou-8 cargo spacecraft replenishment mission will be advanced as scheduled. Not only that, with the "commercial aerospace" being written into the government work report for the first time, new quality productivity in the aerospace field is also gestating.

In January this year, Kuaizhou Rocket created the fastest networking record of domestic commercial satellite constellations. This year, the company will also complete eight space launch missions.

Accord to that national space administration, at present, there are nine types of commercial launch vehicle that can provide launching services, and a number of remote sen constellations of 100 orders of magnitude initiated by commercial enterprises are under steady construction. With the active arrangement of local governments and enterprises, it is estimated that the scale of China’s commercial space market is expected to exceed 2.3 trillion yuan this year.

China’s economy will make greater contributions to the world economy.

After the National Bureau of Statistics released the economic data for the first quarter of this year, many international financial institutions such as Goldman Sachs, Morgan Stanley and Deutsche Bank raised their economic growth forecasts for China this year. In response, Wang Wenbin, a spokeswoman for the Ministry of Foreign Affairs, said at a regular press conference held on April 24th that looking ahead, the trend of China’s economic recovery for the better and the longer term will not change, and it will make greater contributions to the world economy.

Wang Wenbin, a spokesperson for the Ministry of Foreign Affairs, said that in the first quarter of this year, China’s economy got off to a good start, the "troika" indicators of consumption, investment and export were running well, and the four macro indicators of growth, employment, inflation and balance of payments remained generally stable, releasing a "strong sense of spring" of sustained recovery. In the first quarter, China’s GDP increased by 5.3% year-on-year, of which domestic demand contributed 85.5% to economic growth, which is the main force to promote economic growth. The UNCTAD report predicts that China’s economy will achieve the growth target of around 5% this year. The 2024 global foreign direct investment confidence index released by American management consulting service company Kearney shows that China’s ranking jumped from the seventh place last year to the third place. According to a Bloomberg report, China will rank first in the world in the proportion of new economic activities in the next five years. Looking into the future, the trend of China’s economic recovery to be good and long-term good will not change. It is believed that with the continuous promotion of high-quality development and high-level opening up, China’s economy will accelerate the pace of transformation and upgrading on the basis of steady progress and make greater contributions to the world economy.

China set up a national overseas intellectual property dispute response guidance center to save 6.89 billion yuan for enterprises.

The State Council Press Office held a press conference on April 24th. China National Intellectual Property Administration introduced that the National Guidance Center for Dealing with Overseas Intellectual Property Disputes has been set up with the China Council for the Promotion of International Trade, and 43 local sub-centers have been set up in 27 provinces (autonomous regions and municipalities), and work guidance stations have been set up in countries and regions with intensive trade exchanges to provide professional and efficient overseas rights protection guidance services for enterprises. In 2023, 1,706 enterprises were instructed, which saved 6.89 billion yuan in economic losses for enterprises and helped enterprises reduce the cost of rights protection by 390 million yuan.

110 million yuan of central natural disaster relief funds support flood control and disaster relief in Jiangxi, Guangdong and Guangxi.

Recently, the Ministry of Finance and the Emergency Management Department urgently pre-allocated 110 million yuan of central natural disaster relief funds to support flood control and disaster relief work in Jiangxi, Guangdong and Guangxi provinces, focusing on emergency treatment such as search and rescue, relocation and resettlement of affected people, danger elimination, investigation and emergency rectification of hidden dangers of secondary disasters, and repair of damaged houses.

The cultural tourism market continues to heat up, and "fancy" in various places stimulates consumption enthusiasm.

There is still a week before the May Day holiday. These days, air ticket booking has reached a peak, outbound travel has also ushered in a substantial increase, and the cultural tourism market has continued to heat up.

In the big data system of this online booking platform, the reporter found that since mid-April, the air ticket booking curve has obviously increased, and the air ticket booking volume of popular cities has increased day by day, with a one-day increase of 40%. Fifteen days before the holiday, the number of air ticket bookings has exceeded the same period in 2023. The reporter found on a number of online booking platforms that during this year’s "May 1" holiday, medium and long-distance travel was hot, with orders accounting for 56%. The rapid growth of long-distance travel has driven the volume and price of the holiday civil aviation passenger transport market to rise.

Shang Kejia, deputy director of the Transportation Department of the Civil Aviation Administration of China, said: "The main reason for the popularity of the civil aviation passenger transport market is the continuous release of consumer demand, and transportation production has returned to natural growth, and it has entered the stage of improving quality and increasing efficiency."

The online booking platform data also shows that at present, the number of inbound and outbound airline tickets booked during the May 1 holiday exceeds 690,000, an increase of about 17% over a week ago. Thailand, Japan, South Korea, Malaysia and Singapore rank among the top five popular outbound destinations, and the number of outbound travel bookings has nearly tripled year-on-year.

"May Day" is approaching, and Air China will open new Beijing one after another from April 28th — Riyadh, Beijing — Dhaka route, return to Beijing — Madrid — Sao Paulo, Beijing — Madrid — Havana route. By then, the domestic airline route network will cover six continents again.

At the same time, the launching ceremony of the national cultural and tourism consumption promotion activities in 2024 and the home event of the National May Day Cultural and Tourism Consumption Week were also held in Zhuhai on April 23rd. With the theme of "Cultural tourism benefiting the people and sharing a better life", all localities will launch special cultural tourism activities, new consumption scenarios and measures to benefit the people around traditional festivals, legal holidays and summer holidays to stimulate the enthusiasm of cultural tourism consumption.

With the coming of the May 1 holiday, from May 1, Hainan launched the "air ticket is the ticket" travel coupon distribution activity, and tourists outside Hainan Island can exchange tickets for 21 scenic spots in Hainan Island with their tickets for the corresponding time period. During the holidays, Hainan Province will hold more than 150 cultural and artistic, sports events and tourism festivals to welcome tourists from all over the world.

In 2023, the level of residents’ health literacy will increase to 29.70%.

On April 24th, the National Health and Wellness Commission released the health literacy monitoring of China residents in 2023. In 2023, the health literacy level of Chinese residents reached 29.70%, 1.92 percentage points higher than that in 2022, and continued to show a steady improvement trend. 29.70% means that among every 100 people aged 15-69, nearly 30 people have basic health literacy, know basic health knowledge and concepts, master healthy lifestyle and behavior content, and have basic health skills.

The monitoring results show that in 2023, the health literacy level of urban residents in China was 33.25%, and that of rural residents was 26.23%, increasing by 1.31 and 2.45 percentage points respectively compared with 2022. The level of basic knowledge and concept literacy of urban and rural residents is 42.00%, the level of healthy lifestyle and behavior literacy is 32.21%, and the level of basic skills literacy is 26.76%, which is 0.74, 1.58 and 0.76 percentage points higher than that in 2022 respectively. The literacy level of six kinds of health problems from high to low is: safety and first aid literacy 59.33%, scientific health concept literacy 54.71%, health information literacy 41.05%, chronic disease prevention literacy 30.43%, basic medical literacy 28.84% and infectious disease prevention literacy 28.02%.

Carbon dioxide emissions per unit GDP are expected to drop by 3.9% this year.

On April 23rd, the Ministry of Ecology and Environment released the main target of ecological environment protection in 2024. This year, the average concentration of PM2.5, the ratio of days with excellent air quality, the ratio of surface water quality sections I to III and other eco-environmental quality indicators in cities at prefecture level and above will be better than the schedule requirements of the Tenth Five-Year Plan, the carbon dioxide emissions per unit GDP will be reduced by about 3.9%, and the total emissions of nitrogen oxides, volatile organic compounds, chemical oxygen demand and ammonia nitrogen will continue to decrease.

From stumbling to counterattack all the way, the original "Fengyun" is such a satellite.

  Fengyun-4 Satellite Photo courtesy of China Aerospace Science and Technology Corporation No.8 Institute

  During the Tenth Five-Year Plan period, China plans to launch seven Fengyun meteorological satellites. By 2035, China’s meteorological comprehensive strength will reach the world advanced level, and meteorology will be deeply integrated into people’s livelihood security and industry development, and a meteorological power will be basically built. ]

  Start wechat, a lonely villain stares at the earth. The first complete photo of the Earth released by NASA to the world is called "Blue Marbles". It was shot by Apollo 17 astronauts, and the perspective was over the African continent.

  Whenever Chen Xiaojie, deputy director of the General Office of Meteorology and Environment of the Eighth Academy of China Aerospace Science and Technology Corporation and chief designer of Fengyun-4 satellite, opens WeChat, his thoughts will always fly to September 25, 2017 involuntarily.

  That day was the day when China’s new generation of geostationary orbit meteorological satellite Fengyun-4 A star was officially delivered and put into use, and the WeChat startup screen changed its face accordingly — — The image is still the blue earth, but the location of the exhibition has become the Eastern Hemisphere, and it was Fengyun No.4 A star that shot it.

  "The photo perspective is the earth observed from above China, and that feeling is very different." Chen Xiaojie has been deeply impressed by this.

  At the beginning of 1969, a rare freezing rain and snow disaster swept half of China. At that time, only the Soviet Union and the United States had meteorological satellites in the world. Although China can accept foreign satellite cloud picture, it is only a simple "black-and-white image", and it is impossible to mine the original data and retrieve various meteorological elements, so its application is greatly limited.

  On January 29, 1969, Premier Zhou Enlai put forward: "We should quickly change our backwardness and build our own meteorological satellite." In February 1970, Premier Zhou personally issued documents from the Central Committee of the Communist Party of China, the State Council and the Central Military Commission, and assigned the task of developing meteorological satellites. As a result, China’s meteorological satellite industry officially started.

  Up to now, China has successfully launched 17 Fengyun series meteorological satellites, and 7 of them are currently in orbit. These satellites, which are the most "aware of people’s warmth and coldness", observe the changes of the earth in space, prompting us to add clothes and umbrellas.

  According to the China Meteorological Bureau, China plans to launch Fengyun-4 B and Fengyun-3 E satellites in 2021, and seven Fengyun meteorological satellites are planned to be launched during the 14th Five-Year Plan period. "By 2035, China will establish a meteorological business system with accurate monitoring, accurate forecasting and fine service. The comprehensive meteorological strength will reach the world advanced level, and the meteorology will be deeply integrated into people’s livelihood security and industry development, and a meteorological power will be basically built." Zhuang Guotai, director of the bureau, revealed.

  The fate was ill-fated, and the first star "died" after 39 days of launch.

  On September 4th, 1988, Astrin Zhong, the chief designer of Fengyun-1 satellite, stood on the tower with a height of tens of meters, and his heart turned upside down.

  That was the day when China’s first Fengyun satellite was originally planned to be launched. However, after the commander issued the "5-hour preparation" instruction, the control center suddenly lost all the telemetry signals of the satellite and the launch was terminated.

  Ren Xinmin, chief designer of Fengyun-1 satellite project, ordered on-site inspection. Meng Zhizhong and Xu Fuxiang, then the chief designer of the attitude control system, climbed the tower with the test team and nervously performed "surgery" on the satellite. At this time, there are no guardrails around, and there are rockets filled with propellant under the satellite. Every movement should be careful.

  What makes Meng Zhizhong feel stressed is that the scheduled launch time is approaching, and the stations around the country are already ready, constantly calling for news; From Beijing to Shanghai and then to the launch center, soldiers were deployed on the communication lines along the way, and everyone was waiting for the news of the launch at their posts. The troubleshooting work on the tower is progressing slowly, and Meng Zhizhong is both anxious and guilty.

  It was not until the evening that the cause of the fault was finally found out. It was the CMOS circuit of the telemeter that had a "bolt lock" under certain circumstances. The test team took down the telemeter and repaired it overnight, and put it back on the satellite the next morning.

  Three days later, Fengyun-1 A, which took nearly 10 years to develop, was successfully launched, making China the third country in the world with polar-orbiting meteorological satellites. However, after just over a month, the accident happened again.

  On this day, the staff of the National Satellite Meteorological Center found that the received satellite cloud image gradually deviated, and finally only the arc of the earth could be seen. The satellite is out of control.

  Zou Jingmeng, then director of China Meteorological Bureau, asked eagerly: Is there any other way? Meng Zhizhong was speechless.

  Because there was no backup equipment installed, Fengyun-1 A star "died" in space in full view, only 39 days before its launch.

  A rare satellite ground rescue in the history of world space flight

  On September 3, 1990, Fengyun-1 B star was successfully launched. It can provide weather forecast for the 11th Asian Games in time, but after only ten days, it is abnormal.

  Scientific and technical personnel completed the repair in time, but found a thorny problem: the satellite did not carry out anti-radiation reinforcement in component selection and software design. This loophole exposed the computer circuit chip to the bombardment of high-energy particles in space, which easily led to the problem of single event overturning, which would lead to computer malfunction and attitude control system failure at any time.

  The loopholes cannot be filled, and the only way is to strengthen the monitoring of satellites and correct problems in time.

  Astrin Zhonghe and Xu Fuxiang led the scientific and technical personnel to be divided into two working groups, which were on duty in Xi ‘an Satellite TT&C Center in turn. They use the opportunity of the satellite crossing the border six times a day to monitor its on-orbit work.

  On February 14, 1991, in the New Year’s Eve, the satellite cloud picture suddenly distorted and rolled. In the next 75 days, the staff took turns on duty without interruption and began a rare satellite ground rescue operation in the history of world space. Like emergency doctors, they have revived Fengyun-1 B star again and again. However, frequent "operations" have greatly damaged the satellite’s vitality and greatly reduced its life.

  Eventually, Fengyun-1 B star worked intermittently until November 1992, and accumulated normal operation for 285 days in orbit, which failed to reach the design life index of one year.

  Academician Sun Jiadong, a meritorious scientist with two bombs and one satellite, has been with Fengyun for more than 40 years as the chief designer of Fengyun-2 satellite project. He once said: "I have been a chief satellite engineer in my life, and Fengyun-2 is the most unforgettable."

  In February 1994, China’s first geostationary orbit meteorological satellite — — Fengyun-2 01 came to xichang satellite launch center. After many tests, the satellite was successfully refueled and fitted with a solid apogee engine, only to be fully tested for the last time before the transition.

  On the morning of April 2, the test began. At about 10: 50, the solid apogee engine burned and exploded, and black smoke came out with red flames. The observation window glass was shattered and the power supply of the factory building was interrupted.

  This major accident claimed the life of an assembly worker and caused more than 30 test team members to be injured and hospitalized. Astronauts suffered a painful lesson because they did not understand the performance and danger of hydrazine fuel and ignored the requirements of anti-static and environmental temperature and humidity.

  Fengyun-1 star C made a beautiful "turnaround"

  Successive accidents have caused Fengyun satellite development to fall into a downturn. But the astronauts who fell again and again stood up stubbornly again and again. They compiled heavy lessons into a book and became a typical teaching material to guide the follow-up work.

  Meng Zhizhong was 60 years old when he was appointed to preside over the development of Fengyun-1 C star. The previous setbacks made him unwilling. He analyzed that the reason why Fengyun-1 A-Star and B-Star failed to complete their tasks was not that the performance indicators did not meet the requirements, but that they died halfway due to low reliability. Developing a long-term, reliable and stable operational meteorological satellite has become the common goal of the team.

  On May 10th, 1999, Fengyun-1 C star was successfully launched. This launch was later selected as one of the three major events in the last year of the 20th century in China, which was engraved on the China Millennium Monument. In August 2000, the World Meteorological Organization listed the satellite in the world operational meteorological satellite sequence.

  Fengyun-1 star C made a beautiful "turnaround". It has been running stably in orbit for 7 years, and is known as "the first long-lived satellite in sun-synchronous orbit", which has opened a new page in China’s meteorological satellite industry.

  Since then, Fengyun Satellite’s development has become smoother and smoother.

  In 2002, Fengyun-1 D star was launched, becoming one of the longest-lived remote sensing satellites in China. Fengyun-2 C satellite launched in 2004 was the most widely used operational satellite in China at that time, and was highly appraised by the World Meteorological Organization, and was listed as one of the important operational satellites of the global meteorological satellite observation network. From 2006 to 2014, China launched four Fengyun-2 series satellites, which provoked the burden of meteorological support for major national events.

  In 2008, on the eve of the opening of the Beijing Olympic Games, Fengyun-3, China’s second-generation sun-synchronous orbit meteorological satellite, was launched. Since then, Fengyun-3′ s B, C and D stars have been launched one after another, realizing the upgrading of Fengyun-1. They operate in a network with complementary functions, and realize the detection from two-dimensional imaging to three-dimensional detection, and from single optics to full-spectrum wide-spectrum detection, which greatly shortens the update time of global numerical weather forecast, prolongs the forecasting time and further improves the forecasting accuracy.

  In the international "dark war", one star does the work of two stars.

  On January 15, 2021, the price of Taihu short-legged vegetables in Shanghai vegetable market doubled compared with 10 days ago. The local media found that this has something to do with the recent cold wave. According to the forecast of the Meteorological Observatory, there was another cold wave on January 16, and the local vegetable supply unit deployed ahead of schedule to fully carry out the emergency supply work.

  Weather changes affect people’s clothing, travel and even all aspects of life. Tang Shihao, director of the Remote Sensing Application Office of the National Satellite Meteorological Center and chief designer of Fengyun Meteorological Satellite Application System, said that it is only one of Fengyun Satellite’s "basic skills" to provide support for accurately forecasting the cold wave and monitoring its development and influence.

  In particular, a new generation of geostationary meteorological satellites — — The successful launch of Fengyun-4 A satellite has made China’s meteorological satellite technology change from following and running in parallel to running in parallel and leading, which has further improved China’s meteorological comprehensive ability.

  Recalling the development and launch of Fengyun-4 A star, Chen Xiaojie felt like a fierce competition.

  In 2016, as if agreed in advance, the development of a new generation of geostationary meteorological satellites in China, the United States, Europe and Japan all reached a critical juncture, and everyone was secretly struggling.

  In addition to the fact that European satellites have not yet been launched for various reasons, in early November 2016, Japan took the lead in launching the "Himawari 9" satellite. This satellite adopts many American technologies and products and will replace the "Sunflower 8" previously launched by the country.

  On November 19th, a new generation of geostationary meteorological satellite GOES-R was launched. According to industry evaluation, compared with previous meteorological satellites, the leap brought by this satellite is like changing from black-and-white TV to high-definition color TV.

  On December 11th, China’s Fengyun-4 A star was launched.

  Chen Xiaojie said that Fengyun-4 A star not only leads the world in its comprehensive observation ability to the earth, but also is the first geostationary meteorological satellite in the world to realize the comprehensive observation of "multi-spectral two-dimensional imaging+hyperspectral three-dimensional detection+ultra-narrow-band lightning imaging" by a single satellite.

  In the past, the interference between vertical detection instruments and imaging observation instruments has always been an international problem. The previous practice in Europe was to put the two on two satellites respectively.

  Compared with international competitors, the performance of Fengyun-4 A star is not inferior. Some people describe this star as doing the work of two stars at the same time.

  According to Dong Yaohai, chief designer of Fengyun-4 satellite system, the satellite has realized the simultaneous operation of multiple loads with moving optical components through the self-developed SAST-5000 satellite platform, and all loads coexist harmoniously.

  The multi-channel scanning imaging radiometer carried by the satellite was the most advanced radiation imager for geostationary satellites in China at that time, which could scan the eastern hemisphere every 15 minutes with the highest spatial resolution of 500 meters. "The accuracy of 500 meters is equivalent to placing a few candles a few kilometers away for a geostationary orbit close to 36,000 kilometers high, and it can be seen clearly." Dong Yaohai said that this accuracy is equivalent to the GOES-R satellite launched by the United States at the same time.

  At the same time, the interferometric atmospheric vertical detector carried by Fengyun-4 A star can detect the atmosphere vertically; China’s first satellite-borne lightning imager can be used to stare at China and its surrounding areas with wide-angle lenses, and it can take 500 photos every second to record the frequency and intensity of lightning.

  Fifteen years later, meteorological comprehensive strength leads the world.

  Starting this year, Fengyun family will be "added".

  According to the China Meteorological Bureau, the second satellite of Fengyun-4 — — Fengyun-4 B star, the development work has been basically completed. According to the plan, it will be launched this year.

  The load of Fengyun-4 B star has been optimized. For example, multi-channel scanning imaging radiometer, some channels have been locally optimized; The spatial resolution of the atmospheric vertical detector has also been improved.

  At the same time, a fast imager has been added to this satellite, which can flexibly observe different areas according to instructions by adjusting the lens, and the resolution is the highest among the global geostationary meteorological satellites at present.

  Tang Shihao is looking forward to this. He said that at present, Fengyun-4 A star images China and its surrounding areas once every five minutes, with the highest resolution of 500 meters. Some weather phenomena with smaller scale and shorter duration may be missed. The fast imager carried by Fengyun-4 B star can image millions of square kilometers once a minute, with the highest resolution of about 250 meters, which has stronger monitoring ability for small and medium-sized weather systems.

  E-Star Fengyun-3, which China plans to launch this year, will be the world’s first meteorological satellite in the morning and evening orbit. At present, the global polar-orbiting meteorological satellites are all in the morning or afternoon orbit, which means that their observation period is in the morning or afternoon. The E-Star Fengyun-3 will be observed at dawn and dusk, which can make up for the current observation gap and improve the accuracy and timeliness of global numerical weather forecast.

  Tang Shihao introduced that after the E-Star Fengyun-3 and Fengyun-3 series satellites currently in orbit are networked, the daily observation time distribution will be more uniform, and the meteorological data of morning and evening time will be obtained. In addition, in the past, Fengyun satellite could only be observed by infrared and microwave instruments at night, while Fengyun-3 E-star was equipped with low-light-level observation equipment, which had the ability to observe visible light at night.

  The reporter learned from the China Meteorological Bureau that the Fengyun satellite planned to be launched in China during the "14th Five-Year Plan" period will further enrich its orbital types. For example, in the geostationary orbit, there will be Fengyun satellites with different orbital positions, which will be observed by optical and microwave means. In low orbit, in addition to the morning and afternoon orbit and the morning and dusk orbit, China will also launch precipitation satellites to the low inclination orbit, mainly to monitor the precipitation in low latitudes.

  Tang Shihao said that the development of Fengyun satellite in the future mainly includes improving the monitoring ability of atmospheric wind field, cloud and rain atmosphere and its vertical structure, improving monitoring accuracy and monitoring timeliness, and enhancing the cooperative mobile observation ability of satellites.

  Produced by Shentong Studio

  Written by: Reporter Fu Yifei

  Planning: Chen Lei

Dry goods: What do the numbers and letters on the truck body stand for?

How can I get the information of a truck I don’t know quickly? Domestic off-brand trucks usually stick various LOGOs on the body, including LOGO, model, horsepower, etc. It is a quick and effective way to obtain basic information from various logos pasted on the body. You can know what brand this is through logo, and you can know the name of the model through the model logo. Then you can use search engine to learn more about this model.

Logo, on the other hand, is also a way for manufacturers to publicize the characteristics of their vehicles. For example, a "4.9s" is marked on the rear of a hybrid vehicle to tell everyone that the acceleration time of this vehicle from 0 to 100 km/h is only 4.9 seconds. Different from passenger cars, trucks have more and more complicated signs, but there are also rules to follow.

Dry goods: What do the numbers and letters on the truck body stand for?

Logo of BYD Hybrid Vehicle

Common way 1: Tonnage+horsepower

The seven mainstream truck brands in Europe are led by Mercedes-Benz trucks, and they like to use the sign "Tonnage+Horsepower" to stick on the door. The nameplate consists of four digits in total, the first two digits represent the total mass of the vehicle design (unit: ton), and the last two digits multiplied by 10 are equal to the maximum output horsepower of the engine. Take 2644, the main model sold in China, as an example, with a total design mass of 26 tons and a maximum output power of 440 HP. 2648, 3360, 1841, etc. are all the same.

Dry goods: What do the numbers and letters on the truck body stand for?

Common body logo of Mercedes-Benz truck

Baotou Beiben Heavy Truck Co., Ltd. signed a cooperation agreement with Mercedes-Benz truck in the 1980s, and introduced a series of products. In terms of product naming, the Beiben model also continued the way of Mercedes-Benz truck, so don’t be surprised to see the same standard method as Mercedes-Benz on the Beiben truck.

Dry goods: What do the numbers and letters on the truck body stand for?

Common body logo of Beiben truck

At present, Foton Motor, which cooperates with Daimler Group, has an EST super truck based on construction. Recently, it has been listed in China and started to use the same signboard form as Mercedes-Benz trucks. For example, the original 430-horsepower model only marked "430" on the door, and now it has been replaced with "2543".

MAN truck company, which is also a German brand, also adopts the standard method of "tonnage+horsepower", which is more intuitive than Mercedes-Benz’s 4-digit standard method. MAN uses the 5-digit standard method, in which the first 2 digits are the total design mass of the vehicle, and the last 3 digits are the maximum output horsepower of the engine, and the model name will be added at the front, usually three English letters. For example, MAN recently promoted 28.480 in China, TGX is MAN’s flagship model, 28 indicates that the total vehicle mass is designed for 28 tons, and 480 indicates the maximum output power of the engine.

Dry goods: What do the numbers and letters on the truck body stand for?

Common body logo of Mann truck in Germany

It is not unreasonable for Italy to be dubbed Italy’s Italian-made medium-sized car. Although the standard method is tonnage+horsepower, people who don’t know it will be puzzled to interpret it according to the convention of Mercedes-Benz, because Iveco’s standard method is very confusing. For example, a Eurocargo is marked with "150E28" next to it, and many people will subconsciously think that this car is 150 horsepower with a total design weight of 28 tons. On the contrary, "150" means that the total design mass is 15 tons and the maximum output power of the engine is 280 horsepower. The latest Eurocargo has changed a new standard method, which is also composed of five digits. The first two digits indicate tonnage, and the last three digits indicate horsepower. "75-190" means 7.5 tons and 190 horsepower. Iveco’s flagship heavy truck is relatively simple and rude, and it is directly labeled as "model+horsepower", which belongs to another classification.

Dry goods: What do the numbers and letters on the truck body stand for?

Body logo of Iveco truck in Italy

A few simple numbers can convey the information of vehicle tonnage, horsepower and even vehicle type. The marking method of "tonnage+horsepower" is very intuitive and effective. Experienced people can roughly guess the vehicle type and service conditions from this marking information, such as Mercedes-Benz 2648, which must be a three-axle vehicle with a total weight of 26 tons. This tonnage level with a 480 horsepower engine is more suitable for high-speed logistics conditions. If Mercedes-Benz 3360 is used, if it is a 33-ton tractor with 600 horsepower, then it is no accident that it must be designed for heavy-duty conditions, so it needs such a large tonnage and horsepower. MAN and Iveco are the same, and I have to admire the person who came up with this method at that time.

Common way 2: model+horsepower

At present, it is the most widely used method to use the model (car series)+horsepower standard method. European manufacturers think that this method is used in all series of models, and the logo consists of one letter plus three digits. The name of Scania car series is relatively simple, which is P/G/R/S series from bottom to top. The car logo is one letter, and the last three digits indicate the maximum horsepower of the engine. Take chestnuts as an example. G480 means that this car uses a series of cabs with a maximum power of 480 HP. The same is true for other series.

Dry goods: What do the numbers and letters on the truck body stand for?

Body logo of Scania truck

Like Scania, there are French trucks. Now Renault’s latest trucks are divided into models with a single letter, including T-series, C-series, K-series and other models, corresponding to different levels and working conditions. The logo is also composed of car name+horsepower. The "T" of the 2015 international truck Renault T520 represents the model, and "520" means that the car is 520 horsepower.

Dry goods: What do the numbers and letters on the truck body stand for?

Renault truck

Domestic cars basically use this standard method. The eldest son of the Republic marked "J6P-460" on the door to indicate that the model name is, the engine output is 460 horsepower; There are also domestic mainstream models such as U480,540, Shaanxi Automobile X3000 480 and Hongyan Jieshi C100 480, all of which are of this kind.

Dry goods: What do the numbers and letters on the truck body stand for?

Body logo of Jiefang truck

This widely used identification method has both advantages and disadvantages. The advantage is that it is intuitive to know the name of the vehicle and the power of the engine, but the disadvantage is that it is impossible to infer the working condition of the vehicle from the name. Therefore, domestic manufacturers will now attach labels such as "Pilot Edition", "Sailing Edition", "Composite Edition", "Lightweight Edition" and "Smooth Edition" to the body surface to further refine the vehicle classification. If you think that this can satisfy the "show off" psychology of manufacturers, it is naive, and then read on.

Common way 3: technical identification cannot be less.

We can often see various labels such as "VVTI", "TFSI" and "1.5T" on passenger cars. These are the places where manufacturers are not or not good enough to flaunt their cars with other brands, which can be understood as a show off. For example, Toyota’s VVTI variable valve technology is a Toyota patent, and other manufacturers can’t flaunt themselves like this, so Toyota can use this as a selling point. The same is true for truck manufacturers, on the one hand, to show more information, on the other hand, to show off. Among them, the engine logo is the most common, and both domestic and foreign car companies play this set.

Starting from Mercedes-Benz, "BlueTec" can be found on passenger cars and trucks. It is the name of a diesel engine exhaust aftertreatment system originally created by Mercedes-Benz. This aftertreatment technology can effectively reduce particulates and effectively reduce the emission of nitrogen oxides. It is one of the cleanest diesel engine technologies in the world. Is Mercedes-Benz a naked show?

Dry goods: What do the numbers and letters on the truck body stand for?

Technical signs on Mercedes-Benz trucks

Another model of Mercedes-Benz truck with engine will put a "V8" logo on the front of the car to tell the onlookers that this is a car with V8 engine. European manufacturers MAN and Scania also have this practice, and will add the V8 logo as an honor to the car. But now, with the emission escalation, only Scania has retained the V8 engine with Euro 6 emission, and the gold content of the V8 logo is even more sufficient in Ouka.

Dry goods: What do the numbers and letters on the truck body stand for?

Technical signs on Scania trucks

Even if there is no V8 engine, as long as the engine technology is advanced enough, it can be pasted on the car as a show-off capital. MAN in Germany has an engine with Euro-6 emission. The engine model starts with "D38". This D38 engine has excellent performance, and all indicators can kill competitors, both in fuel economy and power. Therefore, MAN will put a "D38" logo on the model equipped with D38 engine to let you know that this is a car equipped with D38 engine.

Dry goods: What do the numbers and letters on the truck body stand for?

Technical signs on MAN trucks in Germany

Similarly, domestic manufacturers have done a lot, and there are two brands of DCI engines with Renault technology to choose from. In order to highlight DCI engines, all cars equipped with DCI engines will add a "DCI" logo before the horsepower logo, while machines equipped with Dongfeng Cummins do not have this treatment. The same is true for United trucks. Models equipped with flagship engine series will stick a "6K inside" on the door to indicate that the "heart" of this car is 6K.

Dry goods: What do the numbers and letters on the truck body stand for?

Common body logo of Dongfeng Tianlong

It sounds incredible to make a car system specially for an engine, but in fact there are quite a few. Up to now, it is the king of horsepower of European trucks. A 16-liter inline 6-cylinder engine has made a maximum output of 750 horsepower, which is enough to be proud of. For this reason, a truck is specially added on the basis of "".The front face of the vehicle is different from other FH colors, and the surface of the car body also has a special logo.

Dry goods: What do the numbers and letters on the truck body stand for?

750 horsepower model

Ou Man, a domestic manufacturer, is playing this game the most. A Ou Man GTL model with an ISG engine is called "Edition", and a big "ISG" logo is attached to the side of the car body; Ou Man GTL with Mercedes-Benz OM457 engine is called "Mercedes-Benz Edition", and there is a corresponding logo on the body. Because there are many engines available for Foton models, in order to better distinguish the engine brands, there is a letter behind the horsepower logo to represent the engine brands. For example, "490 G" means the maximum output power of the engine is 490 HP, the engine is Cummins ISG, the letter "W" means, and "B" means Mercedes-Benz power.

Dry goods: What do the numbers and letters on the truck body stand for?

Body logo of GTL truck in Ou Man

Standard torque

Finally, I want to talk about a very distinctive logo type. Recently, Dongfeng Tianlong flagship has put on a new logo method, changing the horsepower standard method used in the past and replacing it with 4 digits plus engine displacement. These four figures can make many people blindsided and completely unable to understand what they mean.

Dry goods: What do the numbers and letters on the truck body stand for?

The latest body logo adopted by Tianlong flagship

"2330" and "13L", which is easy to understand, represent the engine displacement of 13L, because there are not many domestic models that can assemble 13L engines now, and most of the so-called 13L engines have a displacement of more than 12L, and only Dongfeng Cummins ISZ 13 has a real domestic displacement of 13L, so it is so proud to stick "13L" on the car body. The meaning of "2330" doesn’t matter, it represents the maximum torque output value of the engine, and other manufacturers mark the engine power. It is also the first time for Dongfeng to mark the torque, which is a precedent. The purpose of doing this is to show that the engine torque is large, the vehicle power is strong, and the starting point is very good. It is not known how the actual publicity effect is.

Privately, this practice is more like manufacturers "entertaining themselves." There are two reasons. The first is that the practice of marking torque seems intuitive. In fact, it is difficult for the bottom users to quantify this value, and they have no idea about it. They are used to the marking method of horsepower and suddenly have a torque, and they can’t understand how much horsepower this is. It’s like everyone says that he is xx meters tall, and suddenly someone says that he is xx feet tall, which makes it impossible to judge the height of his birth immediately according to his own experience. The second is that the labeling form is too counterintuitive, and almost no one can guess what these four numbers mean. The combination of tonnage and horsepower of Mercedes-Benz is deeply rooted in the hearts of the people and will be interpreted in the form of Mercedes-Benz.

To sum up all the models, there must be a key message-horsepower value no matter how the logo rules of different brands and models change. In the final analysis, a truck is a means of transportation, and the most basic and key indicator is the strength of power. Only when the power is strong enough can it carry goods. Basically, all truck engines are diesel engines and turbocharged, which are standard configurations, so there is no need to mark these as selling points like passenger cars. An engine will have several different output power adjustments, and with different engine types, the optional horsepower range will be particularly rich. At this time, marking the horsepower value on the body can reflect the power strength of the vehicle relatively intuitively.

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Dalian, Liaoning Province announced the itinerary of 7 newly confirmed local cases yesterday, of which 2 cases were negative for nucleic acid for 8 times.

On November 19th, the General Command of Epidemic Prevention and Control in COVID-19, Dalian released that from 00: 00 to 24: 00 on November 18th, seven new confirmed cases of local COVID-19 were found in Dalian, all of which were found through active investigation by close contacts and key people.

The main activity tracks of confirmed cases are announced as follows:

Confirmed case 281: an employee of a company in Ganjingzi District, living in Vanke City Community, Xiangquan Community, Advanced Street, Jinpu New District. November 7th — On the 15th, the nucleic acid test was negative for four times; On November 18th, the nucleic acid test was positive in the active investigation of the key population, and then it was transferred to COVID-19 for centralized treatment and isolated treatment in Dalian Center. After consultation by the provincial expert group, it was confirmed as an ordinary case.

On November 12th, I went to Dashang Supermarket (Jinzhou Democratic Plaza Store) at noon and to Qingxiang Lamian Noodles (Jinwan Road Store) in the afternoon.

On November 13th, I went to Jiajiafu Supermarket (Wuyi Road Store) in the morning and to Pangjie Steamed Bun Shop (Stalin Road Store) in the afternoon.

On November 14th, I went to Pangjie Steamed Bun Shop (Stalin Road Branch) in the morning.

From November 12th to 14th, I delivered meals to the First People’s Hospital of Jinzhou District every day.

On November 15th, in the morning, I went to Pangjie Baozipu (Stalin Road Store), Xiangquan Street Mother’s Home, an advanced street in Jinpu New District, and Jiajiafu Supermarket (Wuyi Road Store).

On November 16th, in the morning, I went to Jinzhou First People’s Hospital, Parent-child Le Maternal and Infant Life House (Vanke City), Jiajiafu Supermarket (Wuyi Road Store) and Neptune Star Health Pharmacy (Bohai Street Store).

On November 17th, in the morning, I went to Pangjie Baozipu (Jinfang Store), Jiangji Smoked Sauce Dumpling House (Advanced Street) and Fujiale Fruit Supermarket (Vanke Store).

Confirmed case 282: unemployed, living in Wankecheng Community, Xiangquan Community, Advanced Street, Jinpu New District, and the wife of confirmed case 281. November 7th — On the 15 th, the nucleic acid test was negative three times; On November 18th, the close contacts tested positive for nucleic acid during the active investigation, and then they were transferred to COVID-19 for centralized treatment and isolated treatment in Dalian Center. After consultation by the provincial expert group, they were diagnosed as ordinary cases.

November 12-November 15, at the First People’s Hospital of Jinzhou District.

From November 16th to November 17th, I stayed at home.

Confirmed case 283: the son of confirmed case 282, who lives in Vanke City Community, Xiangquan Community, Advanced Street, Jinpu New District. On November 18th, the close contacts tested positive for nucleic acid in the active investigation, and then they were transferred to COVID-19 for centralized treatment and isolated treatment in Dalian Center, and the case was confirmed by the provincial expert group consultation (light).

From November 12 to November 17, the trajectory was the same as that of confirmed case 282.

Confirmed case 284: unemployed, living at No.10 Xiangquan Street, Xiangquan Community, Advanced Street, Jinpu New District, and the mother of confirmed case 281. From November 7 to 17, the nucleic acid test was negative for four times; On November 18th, the close contacts tested positive for nucleic acid in the active investigation, and then they were transferred to COVID-19 for centralized treatment and isolated treatment in Dalian Center, and the case was confirmed by the provincial expert group consultation (light).

From November 12th to November 13th, I stayed at home.

From November 14th to November 17th, I sampled nucleic acid in the community and went to my son’s house in Wankecheng Community, an advanced street in Jinpu New District.

Confirmed case 285: domestic worker, living at No.358 Nanmian Community, Zhanqian Street, Jinpu New District. From November 5 to 17, nucleic acid tests were negative for three times; On November 18th, the close contacts of 281 confirmed cases tested positive for nucleic acid, and then they were transferred to COVID-19 for centralized treatment and isolated treatment in Dalian Center. After consultation by the provincial expert group, they were diagnosed as ordinary cases.

From November 12th to November 16th, the trajectory was the same as that of the confirmed case 282 (accompanying).

On November 17th, in the afternoon, I sampled the nucleic acid in Nanmian Community and bought it in Wan Jiale (Nanmian Road Store).

Confirmed case 286: employee of a company in Ganjingzi District, living in P1 District of Quanshui Street in Ganjingzi District. From November 8 to 17, the nucleic acid test was negative for 8 times; On November 14th, as a close contact, he was transferred to a centralized isolation place. On November 18th, the routine nucleic acid test result was positive, and then he was transferred to COVID-19 for centralized treatment and isolation treatment in Dalian Center. After consultation by the provincial expert group, he was diagnosed as an ordinary case.

From November 12th to 13th, I stayed at home.

Confirmed case 287: a child, living in the family building of the Finance Bureau of Chengguan Street, zhuanghe city. From November 4 to 14, nucleic acid tests were negative for 8 times; On November 14th, as a close contact, he was transferred to a centralized isolation place. On November 18th, the routine nucleic acid test results were positive, and then he was transferred to COVID-19 for centralized treatment and isolation treatment in Dalian Center. After consultation by the provincial expert group, the case was confirmed (light).

From November 12th to November 14th, I stayed at home.

2013 Shandong Science and Technology Award: Suggested Awarding Candidates and Project Publicity

  Now, the candidates and projects recommended by the 2013 Shandong Science and Technology Highest Award Review Committee, Shandong Natural Science Award, Technological Invention Award and Scientific and Technological Progress Award Review Committee and Shandong International Science and Technology Cooperation Award Review Committee will be publicized to the public.
  The candidates for the highest prize of science and technology in Shandong Province, the first and second prizes and projects of natural science award, technological invention award and scientific and technological progress award in Shandong Province, the candidates for international scientific and technological cooperation award in Shandong Province were publicized in Popular Daily, and the candidates and projects for the third prizes of natural science award, technological invention award and scientific and technological progress award in Shandong Province were published in Science and Technology Information News on November 19, 2013. See also the websites of Shandong Provincial People’s Government (http://www.shandong.gov.cn) and Shandong Provincial Science and Technology Department (http://www.sdstc.gov.cn).
  According to the relevant regulations, if there is any objection to the proposed award candidates and projects publicized, it shall be submitted in writing within 30 days from the date of publicity to the office of Shandong Science and Technology Awards Committee (located in the Science and Technology Achievements Department of the Provincial Science and Technology Department, address: No.607 Shunhua Road, Jinan High-tech Zone, zip code: 250101).

Shandong province science and technology highest award
(1 person)

Zhao Jiajun
  Zhao Jiajun, male, born in May 1961, is a doctor of medicine and professor. He is currently the vice president of Shandong Provincial Hospital, director of endocrinology department, vice chairman of endocrinology Committee of Chinese Medical Association, and chairman of Shandong Endocrinology Society. He has been selected as a leading medical talent in Shandong Province and the first batch of experts specially invited by Taishan Scholars, and has also been selected as the second-phase construction project of Taishan Scholars.
  Professor Zhao Jiajun has been engaged in clinical diagnosis, treatment and basic research of endocrine and metabolic diseases for 30 years, taking thyroid diseases and diabetes as the research objects, focusing on the role of lipid metabolism disorder in the occurrence and development of endocrine diseases, and carrying out systematic basic and clinical transformation research around the relationship between lipid metabolism disorder and thyroid diseases and lipid metabolism disorder and diabetes. Breaking through the shackles of traditional theories, the author innovatively put forward the viewpoints of "TSH directly regulates cholesterol metabolism" and "intervenes lipotoxicity to prevent and treat diabetes" internationally, which provided new strategies for clinical prevention and treatment of thyroid diseases and diabetes. Professor Zhao Jiajun led the endocrinology discipline to become the first batch of clinical medical centers in Shandong Province, the post of "Taishan Scholar", the key discipline of medicine and health in Shandong Province and the key discipline of "985 Project" in Shandong University.
  Professor Zhao Jiajun has presided over one national science and technology support plan, one 973 sub-project, three national natural science funds, three Shandong natural science funds, two Shandong science and technology development plans, one Shandong outstanding young and middle-aged scientist award fund, one Shandong international science and technology cooperation project, one international exchange and cooperation project of the Ministry of Health and one key clinical research project of the Chinese Medical Association. He has won 1 second prize of National Science and Technology Progress Award, 1 first prize of Shandong Natural Science Award, 2 first prizes and 2 second prizes of Shandong Science and Technology Progress Award, 1 second prize of Science and Technology Award of China Society of Integrated Traditional Chinese and Western Medicine, and 1 second prize of China Medical Science and Technology Award. He has published 276 papers, of which 65 are included in SCI (10 abstracts). Professor Zhao Jiajun has supervised more than 60 doctoral students, 3 postdoctoral students and more than 20 master students, and won the Excellent Doctoral Thesis Guidance Award of Shandong University and the Graduate Education and Teaching Achievement Award of Shandong University. The graduate students have won many outstanding papers in Shandong Province and outstanding scientific and technological innovation achievement awards for graduate students in Shandong Province.
  Professor Zhao Jiajun has been successively rated as a national outstanding scientific and technological worker, an advanced worker in the national health system, an outstanding young and middle-aged expert of the Ministry of Health, an outstanding young and middle-aged scientist of Shandong Province, and one of the top ten famous doctors in Shandong Province.
Shandong Natural Science Award
the second prize
(9 items)
1. Research on parameter estimation method of a kind of complex system.
  Completed by: Wang Dongqing (Qingdao University, Jiangnan University)
      Ding Feng (Qingdao University, Jiangnan University)
2. Low temperature growth and fluorescence kinetics of ZnO nanostructures and arrays.
  Completed by: Cao Bingqiang (Jinan University)
      Cai Weiping (Hefei Institute of Material Science, China Academy of Sciences)
3. Evolution, singularity and filling behavior of carbon nanotubes/graphene composite structure.
  Completed by: AARON Li (Shandong University)
      Ding Feng (Hong Kong Polytechnic University)
      Liu Jinmao (City University of Hong Kong)
      He Yezeng (Shandong University)
      Jiang Yanyan (Shandong University)
4. Research and application of nano-functional materials in biosensor analysis.
  Completed by: Wei Qin (Jinan University)
      Li He (Jinan University)
      Du Bin (Jinan University)
      Yang Minghui (Jinan University)
      Wu Dan (Ji ‘nan University)
5. Study on structural regulation and catalytic performance of nano-porous metals.
  Completed by: Ding Yi (Shandong University)
      Zhang Zhonghua (Shandong University)
      Xu Caixia (Shandong University)
      Ma Houyi (Shandong University)
      Xu Xiaohong (Shandong University)
6. Pathogenesis and intervention strategies of invasive pituitary adenoma.
  Completed by: Pang Qi (Shandong Provincial Hospital)
      Xu Guangming (Shandong Provincial Hospital)
      Qu Yuanming (Shandong Provincial Hospital)
      Liu Yingchao (Shandong Provincial Hospital)
      Xin Tao (Shandong Provincial Hospital)
7. Study on the whole functional genomics of human epididymal sperm maturation.
  Completed by: Li Jianyuan (Yuhuangding Hospital, Yantai)
      Wang Haiyan (Yantai Yuhuangding Hospital)
      Liu Fujun (Yantai Yuhuangding Hospital)
      Liu Xin (Yantai Yuhuangding Hospital)
      Liu Jie (Yantai Yuhuangding Hospital)
8. Study on the construction, stability and transmission characteristics of new soliton excitation modes.
  Completed by: Bai Chenglin (Liaocheng University)
      Zhao Hong (Liaocheng University)
      Liu Shanliang (Liaocheng University)
      Zheng Hongjun (Liaocheng University)
9. Study on new environmental functional materials and their interaction mechanism with metal ions
  Completed by Qu Rongjun (ludong university)
      Chen Ho (ludong university)
      Sun Changmei (ludong university)
      Yin Ping (ludong university)
      Ji Chunnuan (ludong university)
Shandong Technological Invention Award
first prize
(3 items)
1. large diameter 4H-SiC single crystal substrate material
  Completed by: Xu Xiangang (Shandong University)
      Hu Xiaobo (Shandong University)
      Chen Xiufang (Shandong University)
      Peng Yan (Shandong University)
      Gao Yuqiang (Shandong Tianyue Advanced Material Technology Co., Ltd.)
      Zong Yanmin (Shandong Tianyue Advanced Material Technology Co., Ltd.)
2. Analysis method and key control technology of zone fracture of surrounding rock of deep cavern.
  Completed by: Zhang Qiangyong (Shandong University)
      Wang Hanpeng (Shandong University)
      Li Shuchen (Shandong University)
      Lin Chunjin (Shandong University)
      Xue Junhua (Huainan Mining (Group) Co., Ltd.)
      Ruan Guoqiang (Yanmei Heze Nenghua Co., Ltd.)
3. Controllable preparation technology of wear-resistant structural functional materials and coatings.
  Completed by Cui Hongzhi (Shandong University of Science and Technology)
      Sun Hongfei (Shandong University of Science and Technology)
      Li Huiqi (Qingdao Haina Plasma Technology Co., Ltd.)
      Zhilipeng (Qingdao Huashijie Environmental Protection Technology Co., Ltd.)
      Wang Canming (Shandong University of Science and Technology)
      Wang Shufeng (Shandong University of Science and Technology)
the second prize
(5 items)
1. The key technologies for the resource utilization of tannery scraps and the research and development of high-performance products.
  Completed by: Li Tianduo (Shandong Institute of Light Industry)
      Cui Yuezhi (Shandong Institute of Light Industry)
      Lihong Fu (Shandong Institute of Light Industry)
      Li Guoying (Sichuan University)
      Baiqingquan (Shandong Lihou Light Industry New Material Co., Ltd.)
      Xu Jing (Shandong Institute of Light Industry)
2. Technological development of extracting lithium from lepidolite by fluorine chemical method and comprehensive utilization of resources.
  Completed by Kuang Ge (Fuzhou University)
      Li Jishan (Shandong Ruifu Lithium Industry Co., Ltd.)
      Wang Zhanqian (Shandong Ruifu Lithium Industry Co., Ltd.)
      Wang Mingyue (Shandong Ruifu Lithium Industry Co., Ltd.)
      Li Yong (Shandong Ruifu Lithium Industry Co., Ltd.)
      Ma Chunchao (Shandong Ruifu Lithium Industry Co., Ltd.)
3. Key technologies and industrialization of fine-grained cast iron materials and high-performance nodular cast iron based on complex raw materials.
  Completed by Cong Jianchen (Tianrun Crankshaft Co., Ltd.)
      Cong Hongri (Tianrun Crankshaft Co., Ltd.)
      Shao Shibo (Tianrun Crankshaft Company Limited)
      Sun Haitao (Tianrun Crankshaft Company Limited)
      Jiang Tao (Tianrun Crankshaft Company Limited)
      Dai Xuezhong (Tianrun Crankshaft Company Limited)
4. Development of multi-speed automatic transmission with power shift.
  Completed by: Xu Xiangyang (Beihang University)
      Wang Shuhan (Sheng Rui Transmission Co., Ltd.)
      Su Chengyun (Sheng Rui Transmission Company Limited)
      Yu Xintao (Sheng Rui Transmission Company Limited)
      Luxi (Sheng Rui Transmission Co., Ltd.)
      Dai Zhenkun (Sheng Rui Transmission Company Limited)
5. Constructed wetland water purification technology with enhanced sustainable operation function.
  Completed by: Zhang Jian (Shandong University)
      Xu Jingtao (Shandong Jianzhu University)
      Zhang Chenglu (Shandong University)
      Fan Jinlin (Shandong University)
      Jia Wenlin (Shandong University)
      Li Cong (Shandong University)
Shandong province science and technology progress award
first prize
(25 items)
1. Key technologies and industrialization of starch derivatization.
  Completed by: Shandong Institute of Light Industry
       Jiangnan University/ Southern Yangtze University
       Zhucheng xingmao corn development co., ltd
  Completed by: Jin Zhengyu, Cui Bo, Xu Xueming, Qiu Lizhong, Tian Yaoqi, Wang Ruiming, Tan Yiping, Xie Zhengjun, Tong Qunyi, Zhao Jianwei, Wang Jinpeng, Bian Xiliang.
2. Inspur Tissot high-end fault-tolerant computer
  Completed by Inspur Group Co., Ltd.
       national university of defense technology
  Completed by: Wang Endong, Hu Leijun, Xu Weixia, Zhang Dong, Huang Jiaming, Lin Kaizhi, Pang Zhengbin, Yin Hongwei, Wang Shouhao, Qiao Xin, Gong Weifeng and Li Yanming.
3. A new information system with low cost, low power consumption and cloud architecture
  Completed by: Shandong University
       Shandong Shanda ouma software co., ltd
       Qingdao Haier electronics co., ltd
  Completed by: Yuan Dongfeng, Jiang Mingyan, Zhang Haixia, Xu Jiali, malei, Zhai Yili, Dong Sheng, Lin He, Shu Minglei, Sun Runyuan and Guan Zhangyu.
4. Development and application of soft cotton nonwovens for medical and health care.
  Completed by: Shandong Junfu Nonwovens Co., Ltd.
       Shandong province nonwoven material engineering technology research center
  Completed by: Chen Guanglin, Peng Wenzhong, Ning Xin, Zhang Tianlei, Luo Jun, Zhang Zhe, Hao Xiaoyi, Zhang Huaying, Wang Xishan, Chang Li and Liu Zhaopeng.
5. Research and development of marine esterase and biological resolution of chiral compounds
  Completed by: Huanghai Fisheries Research Institute, Chinese Academy of Fishery Sciences.
       Shandong huachen biochemistry co., ltd
  Completed by: Sun Mi, Wang Yuejun, Jiang Zhengjun, Hao Jianhua, Liu Junzhong, Wang Shaojuan, Jess Weng, Kang Mei, Ji Xiaofeng, Wang Wei, Wang Fang and Sheng Jun.
6. Key technology and industrialization demonstration of tower granulation of urea-based compound fertilizer
  Completed by: Stanley Fertilizer Co., Ltd.
       Shanghai chemical industry research institute
       National hybrid rice engineering technology research center
       Baoji qindong fluid equipment manufacturing co., ltd
  Completed by: Gao Jinhua, Chen Mingliang, Ma Guohui, Gao Wenkao, Liang Ji, Xie Xueshi, Kong Yizhou, Ge Jianguo, Gao Sumao, Zhang Baowei, Zhao Yuping and Zhou Li.
7. R&D and engineering application of key technologies of large-scale provincial intelligent distribution network
  Completed by: Shandong Electric Power Group Corporation
  Completed by: Du Qiang, Wu Jian, Wu Zhigang, Haitao, Wang Huaguang, Dong Xiao, Fang Mu, Li Lisheng, Liu Minglin, Zheng Yushi, Ma Jinliang and Yang Shaojun.
8. Research on key technologies of super-large diameter slurry shield crossing the Yangtze River under complex topographic and geological conditions.
  Completed by: China Railway 14th Bureau Group Co., Ltd.
  Completed by: Wang Huawei, Chen Jian, Wang Shouhui, Dai Hongwei, Zhang Commune, Han Risk, Li Zhengang, Guo Xinjun, Wang Jianhua, Yang Mingjin, Xia Xiaozhong, Zhao Yu.
9. Research on Asphalt Pavement of Qingdao Bay Bridge Deck
  Completed by: Shandong Expressway Qingdao Highway Co., Ltd.
       Shandong province traffic science institute
       Shandong province Luqiao group co., ltd
       Shandong expressway construction material co., ltd
  Completed by: Li Piming, Wang Lin, Dong Shuxi, Fu Jiancun, Yang Guang, Chen Jiang, Li Jiansheng, Xu Qiang, Ma Shijie, Wang Xiaogan, Zhang Baomin, Sun Jie.
10. Asymmetric deepwater semi-submersible lifting life platform without cross braces
  Completed by: Yantai CIMC Raffles Offshore Engineering Co., Ltd.
  Completed by: Teng Yao, Zhao Hui, He Changhai, Li Lei, Han Huawei, Wang Shoujun, Gao Song, Tang Jianfeng, Yu Changjiang, Wang Yuanyuan, Zhang Hui and Li Peng.
11. Development and performance of new coagulants and adsorption materials for water and wastewater treatment.
  Completed by: Shandong University
  Completed by: Gao Baoyu, Yan Wang, Yue Qinyan, Li Qian, Zhang Yongqiang, Xu Weiying, Xu Xing, Yang Zhonglian and Li Wenhong.
12. Research and application of unconformity structure and its reservoir-controlling mechanism in petroliferous basins.
  Completed by: China Shiyou University (East China)
       China Petroleum Group Science and Technology Research Institute
       China Petroleum Xinjiang Oilfield Branch
       Geophysical Research Institute of Shengli Oilfield Branch of China Petrochemical Company
  Completed by: Cha Jian, Wu Kongyou, Zou Cai, Kuang Lichun, Tan Mingyou, Yuan Xuanjun, Wu Zhiping, Zhang Yue Qian, Chen Zhonghong, Zhu Rukai, Gao Changhai, Hou Lianhua.
13. Research on filling mining method and key technology in Shandong mining area
  Completed by: Shandong Energy Group Co., Ltd.
       Shandong University of Science and Technology
  Completed by: Bu Changsen, Zhai Minghua, Fan Jianguo, Li Wei, Guo Weijia, Guo Xinshan, Zhang Xinguo, Wang Zhaoxi, Wang Huitao and Man Zhongfeng.
14. Key technologies of dynamic water control in deep mine roadway under complex geological conditions
  Completed by: Shandong Luneng Heze Coal and Electricity Development Co., Ltd.
       Shandong University
  Completed by: Li Shucai, Tan Binggang, Wang Xinkun, Zhang Zhe, Wu Jilu, Pan Guangming, Li Haiyan, Zhang Qingsong, Ma Fangyu, Zhang Xiao, Ma Wa and Liu Rentai.
15 deep ground pressure and water inrush dynamic disaster monitoring technology and series of experimental equipment research and development
  Completed by: Shandong University of Science and Technology
       Yuluoka Mining Safety Engineering Co., Ltd.
  Completed by: Guo Weijia, Zhang Xinguo, Tang Jianquan, Huang Yifeng, Chang Xikun, Chen Shaojie, Zhang Xingmin, Fan Weilin, Yin Liming, Sun Wenbin, Zhao Tongbin and Zou Deyun.
16. Identification, evaluation and innovative utilization of peanut germplasm resources
  Completed by: Shandong Peanut Research Institute
       zhongkai university of agriculture and engineering
       Guangxi zhuangzu autonomous region academy of agricultural sciences economic crops institute
  Completed by: Shan Shihua, Zheng Yixiong, Yan Caixia, Li Chunjuan, Zhang Tingting, Zhong Ruichun, Li Shangxia, Guo Feng, Tamia Liu, Chen Shaoting, Jiao Kun and Jiang Chen.
17. Research on key technologies of modern dairy breeding and innovative application of core germplasm
  Completed by: Dairy Cow Research Center of Shandong Academy of Agricultural Sciences.
       Shandong province animal husbandry station
       Shandong aux biology technology co., ltd
  Completed by: Zhong Jifeng, Li Jianbin, Hou Minghai, Wang Changfa, Gao Yundong, Zhang Sicong, Wang Lingling, Wang Hongmei, Liu Wenhao, Jin Ming, Li Rongling and Wang Hong.
18. Research and application of the formation mechanism of main quality and high-quality and efficient cultivation techniques of apples.
  Completed by: Qingdao Agricultural University
       Shandong province guocha technology guidance station
       shandong agricultural resource and environmental science research institute
       Yantai fruit tree workstation
       Qingdao guocha flowers and plants workstation
       Yantai agriculture technology popularizing center
  Completed by Yuan Yongbing, Liu Chenglian, Wang Yongzhang, Cui Xiufeng, Ju Zhiguo, Li Junliang, Tan Deshui, Tian Liguang, Li Xiaodong, Li Zaodong, Yu Shuzeng and Ren Hongchun.
19. Research on functional components of sea cucumber and development of key technologies for deep processing.
  Completed by: China Ocean University
       fishery machincry and instrument research institute, chinese academy of fishery sciences
       zhangzidao group co.,ltd 
       Shandong dongfang ocean technology co., ltd
  Completed by: Xue Changhu, Wang Jingfeng, Shen Jian, Wang Lianzhu, Huang Wancheng, Liu Yuntao, Wang Yuming, Xue Yong, Jeff, Zhao Shiming, Chang Yaoguang and Tang Qingjuan.
20. The role of biological information expression and immune regulation in the development of non-Hodgkin’s lymphoma.
  Completed by: Shandong Provincial Hospital
  Completed by: Xin Wang, Jiang Yujie, Liu Xin, Fang Xiaosheng, Feng Lili, Li Ying, Ge Xueling, Shan Ningning, Zhao Wenbo, Sui Xiaohui, Wan Haiyan, Zhang Ping.
21. Serialized research and application of integrated traditional Chinese and western medicine in the treatment of uveitis
  Setting: The Second Affiliated Hospital of Shandong University of Traditional Chinese Medicine.
       Shandong university of traditional Chinese medicine ophthalmology institute
       Affiliated Hospital of Shandong University of Traditional Chinese Medicine
  Completed by: Bi Hongsheng, Cui Yan, Xie Xiaofeng, Guo Junguo, Wang Xingrong, Guo Chengwei, Ho Choi, Guo Dadong, Wu Hui, Zhang Youhua, Song Jike and Tian Qingmei.
22. Research and application of scientific connotation and characterization system of cold and heat properties of traditional Chinese medicine.
  Completed by: Shandong University of Traditional Chinese Medicine
       Shandong University
  Completed by: Wang Zhenguo, Feng Li, Wang Peng, Zhou Honglei, Doreen Chien Rong-Rong, Xue Fuzhong, Wang Shijun, Fu Xianjun, Zhou Yang, Li Baoguo, Sun Zhiying, Zhou Zhengli.
23 candesartan cilexetil raw materials and tablets technology development and industrial application
  Completed by Disha Pharmaceutical Group Co., Ltd.
       Weihai disen pharmaceutical co., ltd
       Jiangsu Institute of Medicine
  Completed by: Gao Yongji, Li Zongwen, Zhu Chongquan, Long Lianqing, Guo Mengling, Yu Zhongwen, Liu Fengying and Zou Yuanhua.
24 aramid independent innovation platform (enterprise scientific and technological innovation)
  Completed by Yantai Taihe New Materials Co., Ltd.
25 Weigao Group Co., Ltd. Medical Polymer Materials and Products Technology Innovation System (Enterprise Technology Innovation)
  Completed by: Weigao Group Co., Ltd.
the second prize
(164 items)
1. Key technological innovation in the production of low POV peanut products, active peanut protein and peanut functional components.
  Completed by: Qingdao Agricultural University
       Qingdao Dongsheng Group Company Limited
       Qingdao longevity food co., ltd
       Qingdao Baoquan peanut products co., ltd
       Qingdao qingguang foods co., ltd
       Shandong jinsheng grain and edible oil group co., ltd
  Completed by: Sun Qingjie, Wang Minglei, Xiong Liu, Hu Yuzhong, Chen Haihua, Zhao Mei, Dai Lei, Gao Guanyong and Wang Qingguang.
2. Production and high-value utilization technology of cold-pressed peanut protein powder
  Completed by: Shandong Peanut Research Institute
       shandong acdemy of agricultural sciences
  Completed by: Yang Qingli, Yu Lina, Sun Jie, Yang Weiqiang, Liu Hongdui, Wang Jinghua, Zhang Chushu, Bi Jie, Zhu Feng.
3. Three-phase sequential simulated moving bed technology to produce crystalline lactulose.
  Completed by: Shandong Lvjian Biotechnology Co., Ltd.
  Completed by: Xin Chengfu, Jing Wenli, Jin Shuren, Ren Shangmei and Feng Meng.
4. Application of S-type, S-PAM and PHASE broadband control technology in DC inverter air conditioner.
  Completed by: Qingdao Haier Air Conditioner Co., Ltd.
  Completed by: Cheng Yongfu, Liu Juke, Fu Yu, Fan Zengnian, Dong Xiaoli and Liu Jinlong.
5. Development of special cellulose film for high whiteness adhesive tape and its key production technologies.
  Completed by Weifang Henglian Cellophane Co., Ltd.
  Completed by: Li Ruifeng, Gao Yugang, Zhang Xiaoyu, Wang Xin, Zhang Jianchun, Xu Lili, Wang Xiaorong, Qi Xiaowei and Zhang Xiangdong.
6. Research and development of special heat-resistant new material for polyethylene tire packaging film
  Completed by: Shandong Chunchao Group Co., Ltd.
       Shandong Institute of Light Industry
  Completed by: Ouyang Qiuying, Yao Jinshui, Wang Peili, Wang Yong, Zhang Shuhuan, Duan Tao and Xu Xitao.
7. Six groups of six-drop determinant bottle-making machines
  Completed by: Shandong Jiafeng Glass Machinery Co., Ltd.
  Completed by: Wang Chengyao, Yang Ziju, Yu Shujie, Jing Guangcheng, Yang Peng, Ma Jun, Jiang Xinguo.
8. iES-DMS1000 Extreme distribution automation master station system
  Completed by: Jicheng Electronics Co., Ltd.
  Completed by: Wang Liang, Zhou Wenjun, Yu Xuejun, Qi Xin, Zhang Junquan, Bai Zhenyong, Wu Guangchao, Ma Jian, Xu Wenbo.
9. Remote visualization and system implementation of massive data in large-scale dynamic scenes.
  Completed by: Shandong University
       Ji’ nan environmental protection science study institute
       Ge dun San Xi technology (Nanjing) co., ltd
  Completed by: Zhang Caiming, Wang Wenping, Tu Changhe, Jiang Zhifang, Zhou Yuanfeng, Li Xuemei, Han Daowen, Yan Huang and Fan Sufang.
10. Coal mine safety accident emergency rescue linkage management technology and software platform
  Completed by: Shandong University of Science and Technology
  Completed by: Zeng Qingtian, Lu Faming, Duan Hua, Wang Lihua, Liang Yongquan, Zhou Changhong, Ni Weijian, Zhao Hua, Cui Huanqing.
11. Research and application of digital control system for advanced manufacturing equipment
  Completed by: Shandong Computing Center
       Shandong zhengfang Renhe information technology co., ltd
       China Academy of Sciences Shenyang Institute of Computing Technology
       Ji’ nan er machine tool group co., ltd
  Completed by: Zheng Xiaoshi, Cheng Guanghe, Wang Maoli, Hao Huijuan, Hao Fengqi, Luo Xuan, Yang Dongsheng, Zhao Feng and Han Luyue.
12. On-line monitoring system for high-voltage cable fault in power tunnel
  Completed by: Shandong Conway Communication Technology Co., Ltd.
  Completed by: Yang Zhenwei, Zhang Mingguang, Mu Ruijia, Li Shaohui, Wu Jiandong, Ma Baoguo, Fu Huaizhen, Wu Hongbo and Gao Bo.
13. Fingerprint identification core technology and product development and application
  Completed by: Shandong University
       Zhejiang zhongzheng intelligent technology co., ltd
       Qingdao wendatong technology co., ltd
  Completed by: Yin Yilong, Yang Gongping, Ren Chunxiao, Li Jian, Yu Ruisheng, Zhang Jun, Liu Zhongqiu, Zhan Xiaosi and Liu Ning.
14. Synchronous zoom laser infrared night vision device
  Completed by: Shandong Shenrong Electronics Co., Ltd.
  Completed by: Wang Lianwen, Sang Jianguo, Zhao Wancun, Daming Chen, Zhao Jingwei and Tian Zhongchao.
15. Design technology and application of active 3D LCD TV based on backlight partition scanning algorithm
  Completed by Qingdao hisense electric Co., Ltd.
  Completed by: Gao Weisong, Shang Junhui, Miao Yongping, Sui Xingguang, Liu Changan, Dong Yuzhen, Li Chunpu, Feng Hui and Zhang Qihui.
16. Multi-screen interactive design technology for digital home in open network environment.
  Completed by: Hisense Group Co., Ltd.
       Qingdao hisense electric company limited
  Completed by: Li Yujun, Cheng Gang, Zhao Jianli, Song Jingbin, Wu Yupeng, Tang Hengsong, Liu Xiaojian, Mu Anzhen and Liu Yukun.
17. Collaborative product design and animation creation system based on evolutionary computing.
  Completed by: Shandong Normal University
  Completed by: ricas, Zheng Xiangwei, Li Yan, Ding Yanhui, Chen Li and Bai Jing.
18.DDR2 large capacity dynamic random access memory (DRAM) chip
  Completed by Shandong Huaxin Semiconductor Co., Ltd.
  Completed by: Gao Chuangui, Ren Qiwei, Fu Yongchao, Gao Xudong, Xing Guangjun, Yu Zuoming, Yu Xiao, Pan Liyang, Liu Zhaolin.
19. Thick and thin combined intelligent full-automatic roving frame system
  Completed by: Qingdao Global Group Co., Ltd.
  Completed by: Wang Chengji, Cui Guihua, Guo Jiayang, Sun Jie, Li Jianxia, Wang Sendong and Ma Min.
20. Key processing technologies and industrialization of cotton /Sorona low-carbon elastic non-ironing yarn-dyed fabric.
  Completed by Lutai Textile Co., Ltd.
  Completed by: Ni Aihong, Ren Jizhong, Zhang Jianxiang, Guo Heng, Wang Meirong, Jia Yunhui, Zheng Guiling, Xia Wenjing, Tian Lili.
21. Key technologies and applications of eco-intelligent low-damage textile processing.
  Completed by Shandong Ruyi Technology Group Co., Ltd.
       Shandong Jining ruyi wool textile co., ltd
  Completed by: Ding Cailing, Chen Chao, Wang Shaohua, Zhu Yali, Liu Xiaofei, Zhang Weihong, Qin Guang, Chen Qing and Zhang Qingjuan.
22. Optimization, preparation and evaluation technology of antidiabetic bromine compounds in seaweed.
  Completed by: Institute of Oceanography, China Academy of Sciences.
       Affiliated Hospital of Medical College of Qingdao University
  Completed by: Shi Dayong, Fan Xiao, Adrian Xu, Han Lijun, Guo Shuju, Jiang Bo and Yuan Yi.
23. Multi-component design and full-cycle efficient utilization technology of catalytic cracking catalyst
  Completed by: China Shiyou University (East China)
       Qingdao huicheng petrifaction technology co., ltd
  Completed by: Liu Xinmei, Yan Zifeng, Zhang Xingong, Song Chunmin, Wang Youhe, Qiao Ke, Wu Yu, Qian Ling and Wang Huaiping.
24.2- methyl -4- methoxydiphenylamine new process industrialization development
  Completed by: Shandong Dow Chemical Co., Ltd.
       Shandong murui technology co., ltd
       Shandong province bittern resources comprehensive utilization engineering technology research center
  Completed by: Yang Shuren, Li Jianye, Hao Jiangang, Li Mingjing, Lu Fengyang, Zhao Mingchen, Song Gencai, Yan Xue and Zhu Junqiu.
25. Key technologies for efficient utilization of bromine resources and preparation of new flame retardants.
  Completed by: Shandong Tianyi Chemical Co., Ltd.
       Shandong province ocean chemical industry science study institute
  Completed by: Xing Xiaohua, Meng Ye, Li Shanqing, Wang Shanhua, Wang Dan, Sun Yueming and Li Yuanchao.
26. Fast curing, high strength and environmental protection new generation furan resin.
  Completed by: Jinan Shengquan Group Co., Ltd.
  Completed by: Tang Yilin, Zhu Jianxun, Liu Zhaojian, Shen Liebin and Bai Jianyuan.
27. Fire-resistant hydraulic hose for offshore drilling platform
  Completed by Shandong Yuelong Rubber & Plastic Technology Co., Ltd.
  Completed by: Xu Jincheng, Yang Peng, Zhang Dechuan, Jiang Jiejun, Li Xiangjie and Yu Zhaoguang.
28 coking wax oil complex denitrification-catalytic cracking technology and industrial application
  Completed by: China Shiyou University (East China)
       China Petroleum and Natural Gas Co., Ltd. Lanzhou Petrochemical Branch
       Dongying xinguang chemical co., ltd
       Shanghai shengdi industry co., ltd
       Dongying heli investment development co., ltd
  Completed by: Wang Yanzhen, Li Jiamin, Guo Jian, Wang Xiaolu, Liu Yanli, Duan Hongling, Song Chunmin, Qu Hongye and Wu Genzhu.
29.4,4′- diaminodicyclohexylmethane (H12MDA) manufacturing technology
  Completed by yantai wanhua Polyurethane Co., Ltd.
       Ningbo wanhua polyurethane co., ltd
       Yantai wanhua Chemical Design Institute Co., Ltd.
  Completed by: Hua Weiqi, Chen Hao, Qi Wangshun, Yu Tianyong, Hu Shuang, Ni Zilin, Luo Wuxi, Jiang Jinke, Wang Jing.
30. Development and industrial application of key technologies of large-scale methanol synthesis system
  Completed by Yankuang Guohong Chemical Co., Ltd.
       East China University Of Science and Technology
  Completed by: Ying Weiyong, Chu Hongchun, Fang Dingye, Wang Dong, Zhang Haitao, Han Mei, Ma Hongfang, Song Shuqun, Li Jie.
31. Industrialization technology and equipment manufacturing of CCF-1 polyacrylonitrile-based carbon fiber
  Completed by: Weihai Outdoor Fiber Co., Ltd.
       institute of chemistry chinese academy of sciences
       Harbin Institute of Technology (Weihai)
  Completed by: Li Shuxiang, Xu Jian, Gao Changxing, Bian Wenfeng, Li Songfeng, Yan Pengtang, Liu Qinggang, Jiang Yuanhu and Lu Tao.
32. Development and application of large-scale industrialized technology for carbonyl synthesis of acetic anhydride
  Completed by: Yankuang Lunan Fertilizer Plant
       Sinopec Nanjing Engineering Co., Ltd.
       Yankuang coal chemical engineering co., ltd
  Completed by: Wu Yongguo, Jiang Xiaochuan, Song Xianwen, Ye Shengfang, He Wei, Liang Xuemei, Zhang lei, Yan Fang and Wang Keli.
33 plant fiber and polymer composite extrusion decorative profile production technology and equipment
  Completed by: Shandong Tongjia Machinery Co., Ltd.
       Beijing University of Chemical Technology
  Completed by: Li Yong, Sha Yan, Yang Weimin, Duan Weidong, Xie Pengcheng and Jiao Zhiwei.
34 lignite superheated steam drying and upgrading technology research and industrialization
  Completed by: Shandong Tianli Drying Co., Ltd.
  Completed by: Shi Yongchun, Li Sheng, Wang Hongyao, Jiang Bin, Wu Jing, Liang Guolin, Fan Hongmei, Zhang Bo and Li Xuanyou.
35. Annual output of 4 million m2 high-grade decorative plasterboard with veneers and complete sets of technical equipment.
  Completed by Taishan Gypsum Company Limited.
  Completed by: Ren Xulian, Song Wei, Liu Ying, Zhu Tenggao, Zhao Hejun, Cheng Tao, Hou Lichang, Ren Li and Lu Yan.
36. Development and industrialization of technology for preparing oil fracturing ceramsite proppant from industrial solid waste.
  Completed by: Jingang New Materials Co., Ltd.
       Shandong University
  Completed by: Zhang Yujun, Zhao Youyi, Gong Hongyu, Wang Hao, Li Gang, Sun Haibin, Wang Jinhuai and Wang Jianzhong.
37. Development of WP7NG260E40 Natural Gas Engine
  Completed by: Weichai Power Xigang New Energy Engine Co., Ltd.
  Completed by: Shao Sidong, Zhang Shaodong, Wang Jingli, Li Junyin, Ma Yinlei, Li Hongkui, Xi Shiwen, Qi Xiaoling and Yang Shoujing.
38. Three generations of low-emission two-stroke gasoline engines for energy conservation and emission reduction
  Completed by: Shandong Huasheng Agricultural Machinery Co., Ltd.
  Completed by: Shao Yiqun, Li Qingli, Li Dejun, Li Lingming, Hu Yongjin, Liu Nailiang, Xing Shubin, Tan Rongjun and Chloe Wang.
39. Substation partial discharge monitoring and fault early warning system based on electromagnetic wave spatial positioning technology.
  Completed by: Electric Power Research Institute of Shandong Electric Power Group Corporation
       Shanghai Jiao Tong University
       China electric power research institute
       State Grid Electric Power Research Institute
  Completed by: Miao Peiqing, Li Xiuwei, Mu Shiyou, Yao Jinxia, Sheng Gezuo, Yue Hu, Yun Yuxin, Wang Hui and Liu Yadong.
40. Full-process active distribution command and management system based on high reliability.
  Completed by: Qingdao Power Supply Company of Shandong Electric Power Group Corporation
       Shandong luneng software technology co., ltd
       State Grid Electric Power Research Institute
  Completed by: Zhao Shengchuan, Chen Zhiyong, Shi Xiang, Zhang Hanjing, Jiang Chuan, Xu Qiang, Hao Daitao, Guo Yinglei, Xing Hongwei.
41. Power system frequency dynamic behavior analysis and online monitoring system
  Completed by: Shandong University
       Shandong electric power dispatching control center
  Completed by: Zhang Hengxu, Liu Yutian, Li Changgang, Fang Guanghua, Fu Lei and Wang Liang.
42. Development and application of technical support system for new energy dispatching in Shandong Power Grid
  Completed by: Shandong Electric Power Dispatching and Control Center
  Completed by: Liu Hongjun, Zhang Qiang, Zhang Guoqiang, Ma Linlin, Shang Li, Han Deshun, Chen Yuming, Han Shaoxiao and Zhang Jian.
43. Adaptive, self-correcting, perceptual intelligent dispatching plan technical support system.
  Completed by: Shandong Electric Power Dispatching and Control Center
       Tsinghua University
       Beijing Qing da ke yue technology co., ltd
  Completed by: Qiu Xizhao, Xia Qing, Yang Minghui, Zhang Jian, Zhang Guoqiang, Yuan Sen, Zhu Mingxiang, Li Huicong and Zhu Yujin.
44.DF5000 series high voltage inverter system
  Completed by: Dongfang Electronics Co., Ltd.
  Completed by: Ren Zhiyuan, Shi Mingxian, Du Gangqiang, Bi Mingxin, Yu Guang, Zhu Weidong, Song Weidong, Li Yanping and Gong Chuan.
45. Self-heating anti-icing overhead conductor
  Completed by Shandong Kehong Cable Co., Ltd.
  Completed by: Shang Chuanhong, Li Zhonghua, Zang Huawen, Yang Wengang, Qi Wengang, Wang Shuzeng, Qi Tangguo.
46. Polycrystalline silicon solar cells and production technology
  Completed by Shandong Linuo Solar Power Co., Ltd.
  Completed by: Li Binglin, Jiang Yansen, SunJiFeng, Cheng Liang, Ren Xiankun, Jia Heshun and Zhang Chunyan.
47. Key technologies and engineering applications in the construction of super-high-rise and long-span spatial steel structures.
  Completed by: Qingdao University of Technology
       Tsinghua University
       Tongji University
       Qingdao Tianhe steel structure co., ltd
       China metallurgical architecture research institute co., ltd
       Zhongxin Architectural Design Research Institute Co., Ltd.
  Completed by: Yan Wang, Shi Yongjiu, Luo Yongfeng, Hou Zhaoxin, Pu Wei, Wen Siqing, Yu Yousheng, Wang Yuanqing, Guo Xiaonong.
48. Key technologies and integrated application of multi-level and highly sensitive drinking water quality detection.
  Completed by: Jinan Water Supply and Drainage Monitoring Center
       Tianjin Bona Aijier Technology Co., Ltd.
       Anheng Environmental Technology (Beijing) Co., Ltd.
       Jinan university
  Completed by: Jia Ruibao, Sun Shaohua, Wang Mingquan, Wang Qunjie, Wan Zhonghua, Li He, Zhou Weifang, Xin Xiaodong, Chen Jiaquan.
49. Development and application of building heating technology combining solar seasonal heat storage and ground source heat pump.
  Completed by: Shandong Jianzhu University
       Shandong aohua new energy co., ltd
  Completed by: Diao Nairen, Villi, Ping Cui, Chen Zhaotao, Yin Yaoping, Chen Anxiang, Liu Junhong, Zheng Yong, Wang Juan.
50. Study on micro-vibration liquefaction and settlement deformation of soft soil foundation under traffic load in the Yellow River Delta.
  Completed by: Shandong Provincial Transportation Planning and Design Institute
       Shandong University
       Chinese Marine University
  Completed by: Ke Zhang, Liu Zhengyin, Cui Xinzhuang, Shan Hongxian, Wang Chengjun, Li Hualuan, Zhang Mingjing, Ding Wantao and Li Shucai.
51. Research and application of lake soft soil subgrade treatment technology
  Completed by: Shandong Provincial Transportation Planning and Design Institute
       Shandong province communications transportation ting highway bureau
       Shandong University
  Completed by: Kong Xiangfu, Zuo Zhiwu, Guo Zhiyun, Zhang Sifeng, Li Yiwu, Chang Ying, Song Xiuguang, Chen Xiaoyan and Jiang Yanling.
52. Research on the deflection measurement technology of railway bridge by wireless data transmission inclinometer.
  Completed by: Jinan Railway Bureau
  Completed by: Zhang Chuandong, Chen Xuemin, Zhang Jing, Li Rongchang, Hou Xingmin, Hou Qiuping, Wu Xianrong, Ma Xifeng and Wang Baojun.
53. Point light source LED beacon lamp and Beidou measurement and control technology development.
  Completed by: Yantai Navigation Mark Office of Tianjin Maritime Safety Administration.
       Yantai Na Wei Ge Shen Lai Ci Electronic Technology Co., Ltd.
       Shandong Institute of Business
  Completed by: Zhong Jianjun, Wang Ruzheng, Fan Hui, An Hongsong, Sun Xiaopeng, Qu Chen, Zhang Linqiang, Ju Qiang, Cui Zhiwei
Special NdFeB magnetic material for 54.39SH wind turbine with high corrosion resistance and temperature resistance.
  Completed by Yantai Zhenghai Magnetic Materials Co., Ltd.
  Completed by: Zhao Juntao, Yu Yongjiang, Shi Bingqiang, Li Guangjun, Liu Zhiguo, Xu Zhaopu, Wu Jiantao, Yu Dayong.
55. The main pipeline of the primary circuit of the million kilowatt nuclear power plant
  Completed by: Yantai Taihai Manuer Nuclear Power Equipment Co., Ltd.
  Completed by: Wang Xuexin, Wang Genqi, Li Zhengjun, Liu Xinwei, Zhao Tianming, Lin Hongning, Liu Zhongli, Zhang Xiang, Lu Bo.
56. High-strength wear-resistant piston new material
  Completed by: Shandong Binzhou Bohai Piston Co., Ltd.
  Completed by: Zhang Guohua, Feng Zengjian, Mou Jundong, Zhu Junkui, Zhang Yilin, Gao Zhanyu, Gao Xiaobo and Wei Zuoshan.
57. New preparation technology and application of high-density low-alloy powder metallurgy structural parts
  Completed by: Laiwu Xinyi Powder Metallurgical Products Co., Ltd.
       University of Science and Technology Beijing (USTB)
  Completed by Qu Xuanhui, Lv Yuanzhi, Yin Haiqing, Wu Rongchang, Qin Mingli, Zhang Cuizhi, Wu Zhaohua, Zhang Lin, Liu Ruwei.
Research on products and application technology of 58.120-300mm extremely thick high-strength low-alloy structural steel plate.
  Completed by Jigang Group Co., Ltd.
  Completed by: Sun Weihua, Zhao Gan, Cui Jian, Ma Xingyun, Zhang Runsheng, Wang Shaolu, Wang Jinhua, Qiao Song and Yin Shiyou.
59. Development of environment-friendly wear-resistant steel with high strength and toughness
  Completed by Jigang Group Co., Ltd.
  Completed by: Feng Yong, Wang Xiangdong, Liu Xiaodong, Wang Nanhui, Jia Huiling, Li Min, Jia Xiguang, Tian Shiyong and Jin Lishan.
60. The application of high radiation coating technology in blast furnace hot blast stove and coke oven.
  Completed by: Shandong Huimin Technology Development Co., Ltd.
       University of Science and Technology Beijing (USTB)
       Shandong iron and steel co., ltd. Ji’ nan branch
       Rizhao steel holding group co., ltd
       Anhui University of Technology
       shandong jianzhu university
  Completed by: Zhou Huimin, Cang Daqiang, Li Binglai, Zang Xiangyang, Wang Zijin, Luo Shizheng, Wang Fuliang, Wang Lianjie, Lv Dingjian.
61. Industrialization of complete process for direct reduction treatment of zinc-containing dust and mud in iron and steel plants with rotary hearth furnace
  Completed by Laiwu Iron and Steel Group Co., Ltd.
       University of Science and Technology Beijing (USTB)
  Completed by: Zhang Shengsheng, Zhang Xinxin, Xue Qingguo, Zeng Hui, Wang Jingsong, Jiang Lei, Niu Fucheng, Jiang Zeyi and She Xuefeng.
62 domestic and foreign standard comparison system research and development and application demonstration
  Completed by: Shandong Computing Center
  Completed by: Dong Huomin, Li Gang, Li Min, Zhou Mingle, Zhao Zhigang, Ma Wenke, Gu Weidong, Wang Chunmei and Zhang Jiancheng.
63. Research and development of Shandong disastrous weather monitoring and early warning platform.
  Completed by: Shandong Meteorological Observatory
  Completed by: Yan Lifeng, Wu Wei, Zhou Xuesong, Huang Benfeng, Zhang Peng, Qiu Gang, Huang Lei, Wang Xilei and Zhang Minkai.
64. Research and demonstration project construction of seismic safety service technology for rural residential buildings in Shandong Province
  Completed by: Shandong Engineering Earthquake Research Center
  Completed by: Guo Huimin, Wang Youquan, Wang Hualin, Zhang Qian, Liu Zhichun, Peng Yaping, Chao Hongtai, Lin Jinshi and Wang Xiwen.
65. Manufacturing of key parts of low-temperature high-toughness impact-resistant ductile iron for high-speed trains
  Completed by Laizhou Xinzhongyao Machinery Co., Ltd.
  Completed by: Yang Zhongyao, Dewen Li, Li Qichang, Qin Hongling, Qi Xuezhong, Li Fruit, Wang Fubao.
66. Shot peening technology and its application on the metal surface of large-size complex components.
  Completed by Shandong Kaitai Shot Blasting Machinery Co., Ltd.
       Jinan university
  Completed by: Wang Shouren, Wang Ruiguo, Zhang Laibin, Yin Jianguo, Li Changchun, Wang Bin, Sui Zhiqiang, Li Wenteng and Li Cong.
67.TDT44-16×2200 high-strength sheet metal hydraulic moving shearing and unwinding production line.
  Completed by: Taian Hualu Forging Machine Tool Co., Ltd.
       Nanjing University of Science and Technology
  Completed by: Fan Youping, Zuo Guangsheng, Jasmine Zhang, Chang Xin, Liu Chunxiao, Hu Xuecheng, Li Gang, Wu Kai and Xiao Huibin.
68. Key technology and industrial application of large CNC gantry guideway grinder
  Completed by: Weihai east china numerical control Co., Ltd.
       Hunan university
  Completed by: Liu Chuanjin, Qiu Yuliang, Sheng Xiaomin, Liu Bingwen, Yin Dezhen, Wang Wenli, Lin Quanzhi, Cao Zhaodong and Liu Changmin.
69. High-power belt conveyor with controllable braking along long distance
  Completed by Libo Heavy Industry Technology Co., Ltd.
       Shandong University of Science and Technology
       Shanxi Xishan Jinxing Energy Co., Ltd.
  Completed by: Zhou Manshan, Zhang Yuan, Yu Changlong, Yue Yanbo, Ren Yagang, Yu Lin, Bai Xiao, Gao Xiaoming and Luo Yu.
70. Extra large nuclear pump/high temperature high pressure pump comprehensive performance test bench
  Completed by: Shandong Institute of Agricultural Machinery Science
  Completed by: Ma Liang, Li Shaoqing, Jiao Wei, Sang Yunhong, Liu Hui, Sun Yitian, Ma Tianshi, Han Tianfeng and Duan Degang.
71. High-speed automatic production line for stator winding of "energy-saving motor"
  Completed by Shandong Zhongji Electrical Equipment Co., Ltd.
       Shanghai Jiao Tong University
  Completed by: Wang Weixiu, Yanzheng Zhao, Fu Zhuang, Wang Jin, Liu Xuesong, Cheng Jun, Cheng Xuehu, Wang Cesheng, Qi Zhiping.
72. Intelligent high-speed high-rise hydraulic drive lifting and traversing three-dimensional garage
  Completed by Weifang Dayang Automatic Parking Equipment Co., Ltd.
  Completed by: Li Xiangqi, Chen Yougang, Wang Guolin, Li Tiantong, Hu Yuqing, Li Wenbo, Chen Xiude and Chen Dongsheng.
73. Key technologies and industrialization of high-powered bulldozers
  Completed by: Shantui Construction Machinery Co., Ltd.
  Completed by: Xu Gang, Zhang Liyin, Yao Youliang, Zhao Jianjun, Hou Wenjun, Shi Songshan, Song Wenlong, Tian Tiejun and Zhang Mingyue.
74. The treatment technology and application of chemical flooding produced water reinjection in Shengli Oilfield
  Completed by: Shengli Oilfield Branch of China Petrochemical Co., Ltd.
       Shengli Oilfield Shengli Survey Design & Research Institute Co., Ltd.
  Completed by: Zhang Yu, Zhao Shuai, Ding Hui, Liu Huiyou, Liu Guangyou, Huang Wensheng, Zou Jishan, Wang Shunhua, Gui Zhaolong.
75. Pollution characteristics and bioavailability of persistent organic pollutants (POPs) in Shandong Province
  Completed by: Jinan Research Institute of Environmental Protection (Jinan Environmental Monitoring Center Station)
       shandong jianzhu university
       Shandong University
  Completed by: Du Shiyong, Liu Zechang, Zhang Guiqin, Fan Guolan, Wang Zaifeng, Cui Zhaojie, Hou Lujian, Liu Guanghui and Xu Hongyu.
76. Research and application of numerical forecast of fine particulate matter (PM2.5) in Jinan.
  Completed by: Jinan Research Institute of Environmental Protection.
       Shandong University
  Completed by: Hou Lujian, Liu Wenli, Lv Bo, Liu Yutang, Tian Yong, Sun Fengjuan, Li Min and He Tao.
77. Research and application of CAFH high-efficiency chemical purification device
  Completed by: Yantai Baoyuan Purification Co., Ltd.
  Completed by: Yu Ziqiang, Tian Shiai, Zhao Shukui, Jiang Zhongjie, Yang Yuntao, Wang Zhenxiang, Jian Sun, Li Song, Niu Like.
78. Medium temperature IC anaerobic process to produce granular sludge and comprehensive utilization technology of wastewater resources
  Completed by: Rizhao Jinhe Boyuan Biochemical Co., Ltd.
       Institute of Biology, Shandong Academy of Sciences
       Rizhao Lu Xin Jin he biochemical co., ltd
  Completed by: Kou Guangzhi, Li Changtao, Zhang Qiang, Chen Guanhong, Bathen Chow, Gao Xiaotong, Wang Jianing, Yu Haibin and Zhou Yijiang.
79. The key technology integration and model demonstration of regional circular economy of Xinfa Group
  Completed by: Xinfa Group
       Shandong province guohe cycle economy research center
       Shandong University
  Completed by: Zhang Gang, Zhang Xuexin, Cui Zhaojie, Song Tingting, Liu Jijun, Sun Xiaomei, Jia Qi, Wang Yanyan, Pan Shigang.
80. Techniques, models and demonstrations for comprehensive improvement of wetland ecosystem in the Yellow River Delta
  Completed by: binzhou university
       Chinese Marine University
       Shandong Huanghe Delta National Nature Reserve Management Bureau
       Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences
       Dongying Yellow River Delta Protection and Development Research Center
       China University of Mining and Technology (Beijing)
       Shandong haiyun ecology paper industry co., ltd
  Completed by: Lu Zhaohua, Wang Zhenyu, Xia Jiangbao, Liu Yueliang, Xie Wenjun, Mark Ming, Sun Jingkuan, Yuzhen Yang, Li Jialiang.
81. Study on supporting analysis method of 76 elements in geochemical mapping based on reactor neutron activation analysis.
  Completed by: Shandong Geological Science Experimental Research Institute.
  Completed by: Hong Fei, Zhang Yingming, Liu Yaohua, Bai Xuebing, Jiang Huaikun, Lv Zhensheng, Xu Weidong, Wang Qing, Qian Huifen.
82. Key technologies for monitoring the geographical conditions of unmanned airship.
  Completed by: Shandong Institute of Geological Surveying and Mapping
       Shandong University of Science and Technology
       China Academy of Surveying and Mapping
       Beijing ceke space information technology co., ltd
  Completed by: Pan Baoyu, Su Guozhong, Wang Dong, Fan Cunguo, Liu Jia, Zhang Lan, Liu Fengying, Liu Yuedong and Li Yongrong.
83. Research and application of key sand control technology in loose sandstone reservoir of Shengli Oilfield
  Completed by: Oil Production Technology Research Institute of Shengli Oilfield Branch of China Petrochemical Company.
  Completed by: Wu Jianping, Xie Jinchuan, Zhi Qingong, Gao Xuefeng, Wang Dengqing, Zhou Chengshi, Wu Qiong, Chen Gang, Sun Dexu.
84. Seepage theory, development method and industrial application of chemical flooding in high water cut oilfield
  Completed by: China Shiyou University (East China)
       China Petrochemical Co., Ltd. Shengli Oilfield Branch Geological Science Research Institute
       China Petroleum and Natural Gas Co., Ltd. Jidong Oilfield Branch Drilling and Production Technology Research Institute
  Completed by: Hou Jian, Li Zhenquan, Chen Yueming, Song Xinwang, Li Liangchuan, Zheng Jiapeng, Dong Liu, Du Qingjun and Guo Lanlei.
85. Coal-bearing system research and deep coal seam identification technology and engineering application
  Completed by: Shandong University of Science and Technology
       China National Offshore Oil (China) Co., Ltd.
       China Petrochemical Co., Ltd. Shengli Oilfield Branch Exploration Project Management Department
  Completed by: Li Zengxue, Mi Lijun, Song Mingshui, Zhang Gongcheng, Cao Zhongxiang, Lu Dawei, Shen Huailei, Liu Hua, Liu Haiyan.
86. Exploration theory and key technology of 1,000 tons of gold deposits in Jiaojia gold field, Jiaodong.
  Completed by: Shandong Sixth Institute of Geology and Mineral Exploration.
       Shandong province geophysical and geochemical exploration institute
       Shandong geological prospecting machinery factory
  Completed by: Song Mingchun, Zhou Mingling, Huang Tailing, Wang Yongguo, Wei Xufeng, Jiao Xiumei, Cao Chunguo, Hou Qingguo and Song Guozheng.
87. Study on dynamic monitoring and water inrush law of mining pits in submarine gold mines.
  Completed by: Sanshandao Gold Mine of Shandong Gold Mining (Laizhou) Co., Ltd.
       institute of geology and geophysics,cas
  Completed by: Chen Yumin, Ma Fengshan, He Jiping, Xiu Guolin, Zhao Haijun, Yang Zhuzhou, Wang Shanfei, wei li, Guo Jie.
88. Gold metallogenic system and exploration breakthrough in the northern part of Jiaojia fault zone
  Completed by: Xincheng Gold Mine of Shandong Gold Mining Co., Ltd.
       China Geo University (Beijing)
  Completed by: Deng Jun, Bi Hongtao, Wang Zhaoya, Yang Liqiang, Zhang Hongxun, Wang Zhongliang, Zhao Hai, Zhang Liang, Li Dadong.
89. The technology and equipment of coal and gangue separation mining gangue backfill
  Completed by: Shandong New Coal Machinery Equipment Co., Ltd.
       China Mining University
  Completed by: Gao Ruizhi, You Buqiang, Wang Zhongbin, Tan Chao, Chengliang, Fan Dongsheng, Kang Coastal, Li Chunfang, Hou Jutao.
90. Fully mechanized top-coal caving mining technology of soft rock roof and floor with large dip angle in coal seam
  Completed by: Zibo Mining Group Co., Ltd.
       Shandong University of Science and Technology
  Completed by: Zhang Fucheng, Lin Dongcai, Sun Xikui, Huang Shuxiang, Sun Zhaobing, Ma Hongji, Zhang Peisen, He Yong and Liu Yunkai.
91. Multi-factor influence index research and height prediction of fully mechanized mining (caving) water-conducting fracture zone
  Completed by: Yanzhou Coal Industry Co., Ltd.
       China Mining University
  Completed by: Cao Dingtao, li wenping, Liu Ruixin, Hu Xiaojuan, Hu Dongxiang, Li Xiaoqin, Li Zengliang, Sun Ruhua and Ma Qingfu.
92. Development and application of coal roadway anchor digging unit (JMC series)
  Completed by: Yanzhou Coal Industry Co., Ltd.
       Sanyi heavy equipment co., ltd
  Completed by: Ni Xinghua, Huang Xiangyang, Wang Fuqi, Li Enlong, Li Zhonghui, Liu Feng, Li Fuchen, Shi Chengjian and Zhang zhen.
93. Coupling mechanism and engineering application of high-pressure atomized droplets and dust particles in coal mining face
  Completed by: Shandong University of Science and Technology
  Completed by: Cheng Weimin, Zhou Gang, Bao Qingguo, Nie Wen, Wang Gang, Chen Lianjun, Tian Chuanqiang, Yu Yanbin and Wu Lirong.
94. Dynamic monitoring, failure law and water inrush location prediction of floor in deep mine mining face
  Completed by: Shandong University of Science and Technology
       Shandong liangzhuang mining co., ltd
       Laiwu wanxiang mining co., ltd
       Nantun Coal Mine of Yanzhou Coal Industry Co., Ltd.
  Completed by: Wei Jiuchuan, Huiyong Yin, Guo Jianbin, Peihe Zhai, Li Shouchun, Shi Longqing, Zhu Lu, Feng Li and Zhao Peng.
95. Research and application of emergency rescue system and key technologies in Yanzhou mining area
  Completed by Yankuang Group Co., Ltd.
       Xi ‘ an university of science and technology
       Xi’ an senlan science & trade co., ltd
  Completed by: Wang xin, Wen Hu, Li Wei, Wang Zhenping, Li Zengliang, Ma Li, Song Xianming, Zheng Xuezhao and Wang Hongquan.
96. New transgenic insect-resistant cotton varieties Ruiza 816 and Yinrui 361 with high yield, good quality and wide adaptability and their industrialization
  Completed by Jinan Xinrui Seed Industry Technology Co., Ltd.
       Shandong province cotton production technology guidance station
       biotechnology research institute ,caas
  Completed by: Zhang Xiaoxia, Zhao Hongliang, Guo Sandui, Yu Qianlin, Li Ying, Zhang Yangui, Sun Guoqing, Wang Baofeng and Zhou Jianguo.
97. Biological characteristics of peanut rhizobia and efficient nitrogen application techniques
  Completed by: Qingdao Agricultural University
       Shandong peanut institute
       Sichuan agricultural university
       Shandong Kun Ji wo ye biotechnology co., ltd
       Shi kefeng chemical industry co., ltd
  Completed by: Wang Caibin, Wang Minglun, Zhao Ke, Wu Zhengfeng, Zheng Yaping, Xie Yongjun, Sun Xuewu, Wang Yuefu and Yang Weiqiang.
98. Mining excellent soybean gene resources and breeding of series varieties
  Completed by: Crop Research Institute of Shandong Academy of Agricultural Sciences
  Completed by: Xu Ran, Wang Caijie, Zhang Lifeng, Li Wei, Hao Xinxian, Jiang Huilan, Dai Haiying, Cheng Hongbing and Yin Xiubo.
99. Basic research, development and application of Cordyceps Kyushu in Mengshan
  Completed by: Shandong University
       shandong agricultural resource and environmental science research institute
  Completed by: Ling Jianya, Gong Zhiyuan, Zhang Changkai, Yao Qiang, Zhang Guoying, Wang Qi, Han Jiandong, Zhang Haiying and Gao Yuhuan.
100. Research and development of key technologies for prevention and control of obstacles in continuous cropping of vegetables in major facilities.
  Completed by: Vegetable Research Institute of Shandong Academy of Agricultural Sciences.
       Shandong Academy of Agricultural Sciences Institute of Plant Protection
       Shandong Agricultural University
       Shouguang agricultural bureau
       Linyi vegetables office
  Completed by: Jiao Zigao, Wang Kean, Qi Junshan, Yang Fengjuan, Hu Yongjun, Wang Shufen, Wang Xianjie, Zhang Weihua, Li Xuhua.
101. Research and application of transgenic crop detection technology system.
  Completed by Institute of Plant Protection, Shandong Academy of Agricultural Sciences
       Ministry of Agriculture Environmental Protection Research Monitoring Institute (Tianjin)
  Completed by: Lu Xingbo, Sun Hongwei, Huang Fuchao, Liu Hongmei, Fan Li, Lai Xin, Jia Xi, Shine Wong, Wu Xiu.
102. The regional catastrophe law and control technology of blind stinkbug in Shandong Province.
  Completed by Institute of Plant Protection, Shandong Academy of Agricultural Sciences
       Hebei academy of agriculture and forestry Institute of Plant Protection
       Qingdao agricultural university
       Dezhou Academy of Agricultural Sciences
  Completed by: Yu Yi, Men Xingyuan, Li Yaofa, Gao Zhanlin, Zhang Junting, Fan Guanghua, Zhou Hongxu, Wang Yingzi, Jiang Ruide.
103. Research and application of key technologies of new drip irrigation system.
  Completed by: ludong university
       Laiwu chun Yu di Guan technology co., ltd
  Completed by: Zhang Zhenhua, Yang Runya, Liu Xianzhao, Cai Huanjie, Pan Yinghua, Sean, Zhao Weixia, He Fuhong and Ma Donghui.
104. Research and development and mechanism of crop stress-resistant synergistic products
  Completed by: Institute of Agricultural Resources and Environment, Shandong Academy of Agricultural Sciences
       Shandong tianda biology co., ltd
  Completed by: Li Yan, Zhang Yufeng, Zhang Yingpeng, Nie Hongchen, Liang Dong, Sun Ming, Wang Xuejun, Wang Qi and Gao Yuhuan.
105 Newcastle disease epidemiology and prevention and control technology research and application.
  Completed by: China Center for Animal Health and Epidemiology.
       Qingdao baoyite biology pharmacy co., ltd
  Completed by: Wang Zhiliang, Liu Hualei, Ling Hongli, Zhao Yunling, Zheng Dongxia, Jiang Yihai, Xu Tiangang, Lu Yan, Gao Yadong.
106. Key technologies for mass production and diagnosis of swine avian influenza vaccine.
  Completed by: Qingdao Agricultural University
       Qingdao yibang biology engineering co., ltd
       Shandong xinde technology co., ltd
       Shandong entry-exit inspection and quarantine bureau
  Completed by: Shan Hu, Li Mingyi, Fan Gencheng, Huang Juan, Wang Shubai, Xu Biao, Li Guimei, Zhu Yanli, Sun Jian politician.
107. Conservation breeding and innovative utilization of genetic resources of Laiwu pigs.
  Completed by: Laiwu Animal Husbandry Technology Extension Center
       Shandong Agricultural University
       Shandong academy of agricultural sciences animal husbandry and veterinary institute
       Laiwu Laiwu zhuyuanzhongchang
       Laiwu breeding pig breeding farm
  Completed by: Wei Shudong, Zeng Yongqing, Wu Ying, Cao Hongfang, Xu Yunhua, Shine Wong, Sun Yanxiao, Shen Yanfeng and Wang Cheng.
108. Research and application of breeding and virus-free technology of apple good rootstocks.
  Completed by: Yantai Academy of Agricultural Sciences, Shandong Province.
  Completed by: Jiang Zhongwu, Yu Qing, Zhang Zhenying, Song Laiqing, Zhao Lingling, Li Yuanjun, Ryu Mi Yong, Zhang Hongsheng, Lv Xiaoyan.
109. Research and application of key technologies for high quality and high efficiency of pears.
  Completed by: shandong institute of pomology
       Laiyang agricultural bureau
  Completed by: Wang Shaomin, Wang Shuzhen, Zhang Yong, Wang Hongwei, Wei Shuwei, Su Shengmao, Peng Bo, Song Jianzhong and Lao Jianzhong.
110. Low-altitude and low-volume remote control unmanned pesticide applicator
  Completed by: Shandong Guardian Plant Protection Machinery Co., Ltd.
       China Agricultural University
       Linyi Fengyun aviation technology co., ltd
  Completed by: Liu Mingyu, Liu Zhongliang, He Xiongkui, Zhang Xiaowei, Zhao Hengfei and Wang Hao.
111. Breeding of cold-resistant tea varieties and their supporting cultivation techniques.
  Completed by: Qingdao Agricultural University
       Taian Taishan forestry science study institute
       Qingdao ruicaoyuan tea industry technology co., ltd
  Completed by: Ding Zhaotang, Wang Yu, Cao Dehang, liujing, Zhang Xinfu, Wang Yi, Fu Caixian, Hu Jianhui and Jiang Meili.
112. Collection, identification and innovative utilization of mulberry germplasm resources in Shandong Province
  Completed by: Shandong Sericulture Research Institute
  Completed by: Liang Mingzhi, Wang Zhaohong, Du Jianxun, Chen Chuanjie, Liu Xia, Sun Riyan, Yi Sunhua, Shi Ruichang, Zhao Dongxiao.
113. Evaluation of Walnut Germplasm Resources and Breeding of New Varieties
  Completed by: shandong institute of pomology
       Taian forestry bureau
  Completed by: Zhang Meiyong, Xu Ying, Xiang Kun, Li Guotian, Du Fangling, Shen Guangning, Wang Xiaofang, Xue Peisheng and Liu Qinglian.
114. Collection and evaluation of germplasm resources of five main afforestation trees in Shandong Province and breeding of improved varieties.
  Completed by: Shandong Forest Seedling and Flower Station
       Shandong Agricultural University
       Jinxiang county state-owned baiwa forest farm
       Ningyang county state-owned Gao Qiao forest farm
       State-owned guanxian Nursery
       Feixian county state-owned daqingshan forest farm
       Rushan state-owned assets duoshan forest farm
  Completed by: Xu Jinguang, Xing Shiyan, Li Jingtao, Duan Chunling, Zhou Jilei, Xie Hefeng, Grace Wai Wong, Zhang Youhui and Liu Yihua.
115. Theoretical research and engineering practice of radical treatment of the Yellow River estuary.
  Completed by: Dongying Yellow River Estuary Sediment Research Institute
       Yellow River Water Conservancy Commission Yellow River Estuary Research Institute
       Chinese Marine University
       institute of geographic sciences and natural resources research,cas
       Shandong Yellow River Survey Design & Research Institute
       Shandong Hehai Hydraulic Inserting Board Engineering Co., Ltd.
  Completed by: Li Diankui, Yuzhen Yang, Cheng Yiji, Yang Zuosheng, Liu Gaohuan, Wang Houjie, He Furong, Li Xining, Yang Xiaoyang.
116. Research on Key Technologies of Metal Structure in East Route of South-to-North Water Transfer Project
  Completed by: Shandong Water Conservancy Survey and Design Institute
  Completed by: Du Peiwen, Gao Feng, Zhu Fengshan, Xu Zhigang, Fang Hien Kim, Li Qianwen, Liu Tianzheng, Jing Wong and Wang Bei.
117. Research on key technologies of flood safety regulation in Nansi Lake Basin.
  Completed by: Planning and Design Institute of Huaihe River Basin Water Conservancy Administration of Shandong Province.
       Ministry of Water Resources, Ministry of Transport, National Energy Bureau, nanjing hydraulic research institute
  Completed by: Yan Fangjie, Wang Zongzhi, Liu Youchun, Wang Yintang, Li Fei, Liu Kelin, Yao Yong, Bian Dundian and Zhang Lingling.
118. Germplasm resources of kelp and their development and utilization
  Completed by: Institute of Oceanography, China Academy of Sciences.
       Shandong haizhibao ocean technology co., ltd
       Shandong gaolv aquatic products co., ltd
  Completed by Duan Delin, Dong Yongyang, Zhang Hualong, Fu Pengfei, Wang Xiuliang, Yao Jianting, Liu Jidong, Yan Wenhua, Song Xihai.
119. Establishment and application of cultivation technology for fast-growing improved varieties of PARALICHTHYS olivaceus.
  Completed by: Huanghai Fisheries Research Institute, Chinese Academy of Fishery Sciences.
       Haiyang Huanghai aquatic products co., ltd
  Completed by: Chen Songlin, Tian Yongsheng, Sun Deqiang, Deng Han, Sha Zhenxia, Liao Xiaolin, Wang Na, Shao Changwei and Xu Tianjun.
120. The construction of ecological culture mode of sea cucumber ponds in the Yellow River Delta and its supporting technologies.
  Completed by: Shandong Institute of Marine Fisheries
       Yantai university
       Dongying fishery technology popularizing station
  Completed by: Yang Jianmin, Song Xiangjun, Yang Xiulan, Wang Jiying, Zhang Limin, Liu Xiangquan, Wang Weijun, Wang Yuhong and Sun Guohua.
121. The role and mechanism of acetaldehyde dehydrogenase 2 in coronary heart disease.
  Completed by: Qilu Hospital of Shandong University
  Completed by: Chen Yuguo, Xu Feng, Zhang Cheng, Wang Jiali, Xue Li, Zhao Yuxia, Xing Junhui, Pan Chang and Hao Panpan.
122. Study on the key problems of percutaneous localized embolization of liver tissue glue in the treatment of esophageal and gastric varices in liver cirrhosis.
  Completed by: Shandong Provincial Hospital
  Completed by: Zhang Chunqing, Wang Qizhi, Xu Zhuodong, Tang Jun, Wang Qiangxiu, Liu Fuli, Xu Hongwei, Tian Xiangguo, Ding Shuyan.
123. Pathogenesis and new prevention and treatment strategies of Alzheimer’s disease.
  Completed by: Qingdao Municipal Hospital
  Completed by: Tan Lan, Yu Jintai, Li Yang, Miao Dan, Wu Zhongchen, Zhang Wei and Ou Jiangrong.
124. The role of divalent cation transporter 1 in iron accumulation in substantia nigra of Parkinson’s disease.
  Completed by: Qingdao University
  Completed by: Jiang Hong, Xu Huamin, Xie Junxia, Song Ning and Wang Jun.
125. The discovery, secretion regulation and clinical significance of thyroid motilin.
  Completed by: Qingdao University
  Completed by: Xu Luo, Sun Xiangrong, Guo Feifei, Zhu Hai, Han Xiaohua, Lu Jiang and Nan Yang.
Study on the role of natural immune system in the pathogenesis of COPD
  Completed by: Qilu Hospital of Shandong University
  Completed by: Xiao Wei, Jiang Yuanyuan, Zhang Yi, Sun Congcong and Zhang Yuke.
127. Hypoxia-induced invasion and metastasis of non-small cell lung cancer and its tolerance to radiotherapy and chemotherapy.
  Completed by: Shandong Institute of Cancer Prevention and Treatment.
  Completed by: Song Xianrang, Xie Li, Wei Ling, Song Bao, Song Lihua, Wang Xingwu and Liu Yanli.
128. The key technology of immune regulation in epigenetics and its anti-tumor effect.
  Completed by: Institute of Basic Medicine, Shandong Academy of Medical Sciences
       Shandong province medicine biotechnology research center
       Ji ‘nan Central Hospital
       school of pharmaceutical sciences shandong university
  Completed by: Jiang Guosheng, Chang Xiaotian, Wang Yunshan, Zhang Cai, Wen Peie, Ren Xia, Tang Tianhua, Ren Haiquan, Song Guanhua.
129. The basis and clinic of surgical treatment system for trigeminal neuralgia
  Completed by: Shandong University
  Completed by: Zhang Liangwen, Liu Yuguang, Xu Shujun, Yang Yang, Ni Shilei, Jia Deze, Su Wandong, Meng Qingli and Wang Hongwei.
130. Study on chemotherapy and biotherapy of glioma.
  Completed by: Second Hospital of Shandong University
       Beijing Institute of Neurosurgery
       Affiliated Hospital of Medical College of Qingdao University
       Linyi people’s hospital
  Completed by: Zhang Qinglin, Liu Fusheng, Jin Peng, Jin Guishan, Zhang Yuan, Bai Yunan, Heng Xueyuan, Zhang Jian, Liu Yanpeng.
131. A series of studies on the regulation of the endocytosis and exocytosis cycle of integrin αvβ6 on the malignant progression of colon cancer.
  Completed by: Shandong University
  Completed by: Niu Jun, Niu Weibo, Liu Enyu, Peng Cheng, Lin Pengfei, Wang Jian, Wang Ben, Gao Huijie, Xu Xiulian.
132. Localization and cloning of pathogenic genes of blepharoptosis syndrome.
  Completed by Weifang Medical College.
  Completed by: Tang Shengjian, Zhang Wei, Tang Bin, Wang Xiaoke, Zhu Jianying and Li Yanyan.
133. Experimental study on the treatment of bone defect by multi-gene transfection of MSCs combined with nano-bionic bone.
  Completed by: Shandong Provincial Hospital
  Completed by: Zhou Dongsheng, Li Lianxin, Dong Jinlei, Hao Wei, Wang Fu, Wang Lubo, Wang Bomin, Ma Chunyan and Wang Xianquan.
134. Modified reconstruction and repair of finger distal or middle distal defects.
  Completed by: 401st Hospital of China People’s Liberation Army.
  Completed by: Hou Shujian, Cheng Guoliang, Wang Zhenjun, Zhang Yunfei, Yang Linghui, Letian Sun, An Fengmei, Liu Yaping and Feng Peng.
135. Establishment and related research of clinical evaluation and treatment system for giant cell tumor of bone.
  Completed by: jinan military area command General Hospital.
       The Fourth Military Medical University
       Tianjin Tianjin Hospital
       Zhujiang hospital of Southern Medical University
       Shandong weigao orthopedics material co., ltd
  Completed by: Yu Xiuchun, Wang Zhen, Hu Yongcheng, Zheng Guo, Xu Ming, Wang Han, Fu Zhihou, Li Songjian and Xu Songfeng.
136. Related research on deformation registration technology in tumor image-guided radiotherapy.
  Completed by: Shandong Cancer Hospital
       Cancer Hospital Affiliated to Xinjiang Medical University
       Shandong University
  Completed by: Yin Yong, Wang Ruozheng, Wang Hongjun, Gong Guanzhong, Wang Kai, Wang Liming, Lu Jie, Liu Tonghai and Chen Jinhu.
137. Experimental and clinical research on ultrasound in diagnosis, interventional therapy and metastasis factors of liver cancer.
  Completed by: jinan military area command General Hospital.
  Completed by: Dong Lei, Sun Yuanyuan, Liu Wenyuan, Zhang Yan, Wang Hui, Zhao Xiaofeng and Wang Shuanglong.
138. Basic research and clinical application of diagnosis and treatment of hemangioma and vascular malformation
  Completed by: Shandong Provincial Hospital
  Completed by: Huo Ran, Zhu Jun, Leng Tingting, Wang Ximing, Xu Guangqi, Li Shangbin, Wang Li, Zhao Yang, Guo Xuan.
139. The regulation of maternal-fetal interface microenvironment on myeloid and lymphocyte functions in early pregnancy and its significance.
  Completed by: Shandong University
  Completed by Qu Xun, Kong Beihua, Shao Qianqian, Yang Meixiang, Wang Qingjie, Gao Wenjuan, Song Bingfeng, Wang Huayang.
140. Nerve regeneration after hypoxic-ischemic brain injury and its related mechanisms.
  Completed by: Jinan Central Hospital
  Completed by: Zhu Weiwei, Ma Xiaoli, Aihua Ma, Wang Xueyan, Feng Li, Ma Jing, Zhao Hongyang, Xu Mi and Yu Lichun.
141. Study on the mechanism of UPS and CTGF regulating pulmonary hypertension with high pulmonary blood flow.
  Completed by: Shandong University
  Completed by: Wang Yibiao, Wei De ‘e, Chen Ou, Zhu Xiaobo, Ma Yu, Su Hong, Lin Mei, Zhang Zhaohua and Feng Xiaoli.
142. Development and application of tissue engineering artificial cornea
  Completed by: Shandong University
  Completed by: Wu Xinyi, Du Liqun, Pang Maopeng, Ju Qunqun, Jing Zhu, Zhang Kai.
143. Research on the basic and clinical application of nasal septum diseases.
  Completed by: Yantai Yuhuangding Hospital
  Completed by: Zhang Qingquan, Zhang Tianzhen, Zhang Hua, Chen Xiumei, Yan Sun, Zhang Shuhua, Jiang Shaohong, Zhao Limin, Song Xicheng.
144. Study on the large-scale breeding method of Calliphora chrysalis and its control effect on flies.
  Completed by: Taishan Medical College
       Taian disease prevention control center
       Tai ‘an Central Hospital
  Completed by: Zhong Zhang, Yu Ailian, Zhao Aihua, Shi Changsheng, Du Zhenlan, Yu Guangfu and Zhuang Dongming.
145. Analysis on the trend of malignant tumor mortality in Shandong Province from 1970 to 2005.
  Completed by: Institute of Basic Medicine, Shandong Academy of Medical Sciences
  Completed by: Li Huiqing, Li Hao, Xu Aiqiang, Ma Jixiang, Diao Yutao, Zhang Yukun, Guo Xiaolei, Fang Xueqiang.
146. Study on the improvement and procedure of renal laparoscopic surgery and its clinical application.
  Completed by: Yantai Yuhuangding Hospital
  Completed by: Wang Ke, Gao Zhenli, Chunhua Lin, Liu Qingzuo, Men Changping, Wang Jianming, Xie Mao, Wang Deju, Wan Fengchun.
147. Prevention of atherosclerosis and multi-target intervention.
  Completed by: Shandong University
  Completed by: Zhao Yuxia, Xing Yifan, Yan Fangfang, Liu Yan, Yang Ruixue, Lei Zhang and Lu Xiaoting.
148. Study on the Effect and Mechanism of Chinese Herbs for Supplementing Qi and Tonifying Kidney on Improving Brain Function in Diabetes Mellitus
  Completed by: Qilu Hospital of Shandong University
  Completed by: Liu Deshan, Gao Wei, Yonghong Zhou, Zhong Lihong, Liang Ershun, Li Hongzhuan, Lin Weiwei, Li Wei.
149. Study on quantitative diagnostic criteria and clinical application of kidney-qi deficiency in senile hypertension.
  Completed by: Shandong Academy of Medical Sciences
       Shandong university of traditional Chinese medicine
  Completed by: Guo Weixing, Dai Xia, Yu Jie, Zhang Lei, Meng Xianliang, Yao Li, Qiu Yuping, Guo Dong, solemn.
150. Early structural and functional reconstruction of integrated traditional Chinese and western medicine for complex acetabular fractures.
  Completed by: Wendeng osteopathy hospital of Shandong province.
       Shandong Wendeng orthopedics institute
  Completed by: Huang Xiangjie, Liu Dezhong, Jiang Hongjiang, Gao Guangling, Zhou Zhigao, Jiang Hexun, Chu Haibin.
151. Research, development and industrialization of ropivacaine mesylate series products
  Completed by: Chenxin Pharmaceutical Co., Ltd.
  Completed by: Wang Shaotong, Li Datao, Jiangtao Dong, Li Qingtao, Wang Shouhua, Song Qian, Zhang Xiaomei, Yu Qinglu, Sun Yongwei.
152. Advanced technology integration and application of sodium aescinate production process control.
  Completed by Shandong Lvye Pharmaceutical Co., Ltd.
  Completed by: Xue Yunli, Li Shixu, Liu Wanhui, Zuo Ai Xia, Fan Yanli, Sun Qiquan, Lu Daomin, Yu Fang, Du Lihong.
153. Establishment, popularization and application of key technologies for integrated breeding and production of improved varieties of honeysuckle.
  Completed by: Shandong Yate Ecological Technology Co., Ltd.
       Shandong academy of sciences traditional Chinese medicine process control research center
  Completed by: Li Shengbo, Wang Xiao, Liu Wei, Li Yuhang, Zhou Jie, Yuan Chunling, Xing Yanxia, Lei Fang and Wang Daijie.
154. Establishment and application of key technologies for quality control of Chinese patent medicines based on AOTF- near infrared spectroscopy.
  Completed by: Shandong Medical College
       Ji’ nan jinhongli industry co., ltd
  Completed by: Wang Ning, Zou Zhenmin, Wu Weihong, Dong Haiping and Cai Shaosong.
155. Study on breeding of platycodon grandiflorum varieties and standardized and efficient production technology.
  Completed by: Institute of Agricultural Products, Shandong Academy of Agricultural Sciences
  Completed by: Wang Zhifen, Du Fangling, Chen Qingliang, Shan Chenggang, Zhu Jingbin, Ni Dapeng, Wang Weiting, Feng Zhang, Zhang Jiaohong.
156. The role of abnormal placental immune system in adverse pregnancy outcome caused by Toxoplasma gondii infection.
  Completed by: Binzhou Medical College
  Completed by: Hu Xuemei, Zhao Mingdong, Zhang Haixia, Xu Xiaoyan, Zhang Ruijin, Liu Xianbing and Jiang Yuzhu.
157. Macro policies to encourage and standardize overseas R&D investment by China enterprises.
  Completed by: Shandong University of Finance and Economics
  Completed by Cui Youping, Jin Yuguo, Dong Changrui, Wang Wenping, Hou Na, Li Jingjing, Huang Zhongwei, Liu Bo.
158. Research on the Countermeasures of Administrative Assets Management in Shandong Province
  Completed by: Shandong University of Finance and Economics
       Shandong Provincial Department of Finance
  Completed by: Liu Xingyun, Zhang Peng, Li Sen, Zhu Deyun, Zhu Desheng, Ming Debing, Ma Jing, Du Ning and Zhang Lei.
159. Hospital infection monitoring and economic loss evaluation and application in ICU ward.
  Completed by: Shandong University
  Completed by: Wang Shuhui, Zhou Chengchao, Deng Yu, Xu Lingzhong, Wang Xingzhou, Yu Zixu, Wang Haiyan, Hao Junping and Li Yingxia.
160. Study on the Ecological Value and Protection of Wetlands in the Yellow River Delta
  Completed by: Shandong Normal University
  Completed by: Han Mei, Zheng Zhaopei, Qi Shanzhong, Zhang Xiaohui, Cui Jinlong and Liu Liyun.
161. An Empirical Study on the Management System Reform of Public Hospitals in China
  Completed by Weifang Medical College.
       Weifang health bureau
  Completed by: Ma Anning, Zhang Hongcai, Li Jinyong, Zhang Yanli, Song Yinbo, Cai Weiqin, Sheng Hongqi, Wang Chunping and Wang Liyong.
162. Shandong Province’s innovative drug technology and industrial development strategy
  Completed by: Shandong Academy of Medical Sciences
  Completed by: Ma Lu Yu, Yang Yue, Yao Qingqiang, Ma Zhenhuan, Zhong Hao, Sun Jingyang, Li Chen, Ordinary, Zhu Riran.
163. Research and application of modern seed industry development countermeasures in Shandong Province.
  Completed by: Shandong Academy of Agricultural Sciences
       Shandong Denghai Seed Industry Co., Ltd.
       Shandong luyan agriculture superior breed co., ltd
  Completed by: Zhang Liming, Liu Kaichang, Zhao Haijun, Wang Baoqing, Zhang Wei, Wu Jun, Yang Jinsheng, Xie Shubin and Dong Jianjun.
164. Technological innovation system of rubber additives and new materials (technological innovation of enterprises)
  Completed by: Shandong Yanggu Huatai Chemical Co., Ltd.
Shandong International Science and Technology Cooperation Award
(4 persons)
1. Jin Minji
  Nationality: Korea
  Partner: Qingdao Haier drum washing machine Co., Ltd.
2. Atanas Stoianof Bragoff
  Nationality: Bulgaria
  Partner: Yantai Agricultural Science Research Institute, Shandong Province.
3. Miyata Hisashi
  Nationality: Japan
  Partner: Shandong Yu Wang Industrial Co., Ltd.
4. Halver Rausino
  Nationality: Germany
  Partner: Shandong Plison Group Co., Ltd.

The company is suspected of huge fraud! Securities and futures commission strikes hard.

After Henan Xinye Textile Co., Ltd. (hereinafter referred to as "*ST Xinfang" or "Xinye Textile") was put on file by the Securities and Futures Commission on March 21st, the regulatory authorities dealt with it strictly and promptly. In just over a month, the case quickly ushered in new progress.

*ST Xinfang announced on the evening of April 28th that the company received the Notice of Administrative Punishment in advance (hereinafter referred to as the Notice) on the same day, and the company was suspected of inflating, inflating operating income, inflating operating costs, inflating inventory and inflating R&D expenses, resulting in false records in the annual report from 2016 to 2022, and it was planned to be fined 42.5 million yuan. Wei Xuezhu, then chairman of the company, and Xu Qinzhi, then director, deputy general manager, then chief financial officer and secretary of the board of directors, were proposed to be banned from the securities market.

On the same day, the company issued an announcement about the delisting risk warning of the company’s shares being superimposed. The above matters may touch the situation of major illegal forced delisting, and the company’s shares may be subject to major illegal forced delisting. The company’s shares will be superimposed to implement delisting risk warning from April 29, and the company’s shares do not need to be suspended.

Market participants believe that the regulatory authorities intend to punish *ST Xinfang severely and quickly, which means that the concept of strict supervision and strict management is being effectively implemented in regulatory enforcement actions, releasing a heavy signal of cracking down on financial fraud. With the continuous improvement of the level of supervision, strict supervision and management will make the offenders who tell lies, make false accounts and hide the truth "both human and financial" and make the counterfeiters "unable to escape".

Suspected of financial fraud for 7 consecutive years

According to the Notice, Xinye Textile is suspected of inflating and deflating its operating income, inflating its operating costs, inflating its inventory and inflating its research and development expenses, resulting in false records in its annual report from 2016 to 2022.

Among them, in 2016, Xinye Textile inflated its operating income by 327,573,820.56 yuan, reduced its operating cost by 176,566,869.05 yuan, inflated its research and development expenses by 145,689,276.86 yuan, and inflated its total profit by 358,451,412.75 yuan, accounting for the total profit disclosed to the public in the current period.

In 2017, Xinye Textile inflated its operating income by 415,186,873.41 yuan, reduced its operating costs by 113,588,173.09 yuan, inflated its R&D expenses by 161,430,520.00 yuan, and inflated its total profit by 367,344,526.50 yuan, accounting for 115.5% of the total profit disclosed to the public in the current period.

In 2018, Xinye Textile inflated its operating income by 791,260,794.64 yuan, inflated its operating costs by 324,203,622.72 yuan, inflated its R&D expenses by 182,711,331.72 yuan, and inflated its total profit by 284,345,840.20 yuan, accounting for 65.77% of the total publicly disclosed profits in the current period.

In 2019, Xinye Textile inflated its operating income by 1,214,828,839.70 yuan, inflated its operating costs by 447,174,451.37 yuan, inflated its research and development expenses by 184,918,136.28 yuan, and inflated its total profit by 582,736,252.05 yuan, accounting for the total profit disclosed to the public in the current period.

In 2020, Xinye Textile inflated its operating income by 1,033,879,498.96 yuan, inflated its operating costs by 486,224,705.51 yuan, inflated its research and development expenses by 156,715,336.95 yuan, and inflated its total profit by 390,939,456.50 yuan, accounting for the total profit disclosed to the public in the current period.

In 2021, Xinye Textile inflated its operating income by 666,637,035.70 yuan, inflated its operating costs by 92,364,075.25 yuan, inflated its R&D expenses by 163,025,099.78 yuan, and inflated its total profits by 411,247,860.67 yuan, accounting for 1,013% of the total publicly disclosed profits in the current period.

In 2022, Xinye Textile inflated its operating income by 1,258,233,157.95 yuan, inflated its operating costs by 1,919,295,821.13 yuan, inflated its R&D expenses by 101,186,735.00 yuan, and inflated its total profit by 762,249,398.18 yuan, accounting for the current period.

The CSRC believes that the above-mentioned behavior of Xinye Textile is suspected of violating the provisions of Article 63 of the Securities Law of People’s Republic of China (PRC) revised in 2005 (hereinafter referred to as the Securities Law of 2005) and the second paragraph of Article 78 of the Securities Law of People’s Republic of China (PRC) revised in 2019 (hereinafter referred to as the Securities Law), which constitutes the first paragraph of Article 193 of the Securities Law of 2005 and Article 100 of the Securities Law.

The proposed fine is 42.5 million yuan.

According to the facts, nature, circumstances and social harm of the illegal acts of the parties concerned, combined with the special circumstances that the illegal acts span the application of the old and new Securities Law, and according to the provisions of the second paragraph of Article 197 of the Securities Law, the CSRC intends to impose a fine of 42.5 million yuan on the company and related responsible persons.

Among them, it is planned to order Xinye Textile to make corrections, give a warning and impose a fine of 10 million yuan;

It is proposed to give a warning to Wei Xuezhu and impose a fine of 5 million yuan;

It is proposed to give Xu Qinzhi a warning and impose a fine of 4 million yuan;

And impose corresponding penalties on other parties.

Image source: company announcement

Strict supervision and management, and heavy punches are also reflected in the precise attack on the "key minority." According to the Advance Notice of Administrative Punishment and Market Prohibition, Wei Xuezhu was then the chairman of Xinye Textile, and organized and planned the illegal information disclosure involving a long time and huge amount, which seriously disrupted the order of the securities market. According to the relevant regulations, the CSRC intends to decide to ban Wei Xuezhu from the securities market for life.

As director, deputy general manager, then chief financial officer and secretary of the board of directors of Xinye Textile, Xu Qinzhi organized and implemented financial fraud according to Wei Xuezhu’s instructions, and the circumstances were serious. According to the relevant regulations, the CSRC intends to decide to ban Xu Qinzhi from the securities market for 10 years.

Financial fraud touches the bottom line of the capital market and must be resolutely cracked down. Recently, the CSRC has repeatedly stressed that it will continue to strengthen the supervision of listed companies, crack down on financial fraud, illegal occupation and other illegal acts, and effectively protect the legitimate rights and interests of investors.

The responsible comrades of the relevant departments of the CSRC said that in the next step, the CSRC will strengthen joint efforts with various regions and departments to build a comprehensive punishment and prevention system to combat financial fraud, focusing on cracking down on five types of behaviors. First, long-term systematic fraud and third-party cooperation fraud, for the planners and helpers of fraud, we must seriously pursue responsibility and resolutely break the "ecological circle" of fraud. The second is the fraudulent issuance of stocks and bonds. We must resolutely keep counterfeiters out of the capital market and resolutely remove those who have mixed in. The third is the financial "bathing" behavior of abusing accounting policies and accounting estimates and adjusting profits at will. The fourth is the act of counterfeiting through financing trade, "idling" and "taking orders". Fifth, a series of fraudulent acts accompanied in the process of encroaching on the interests of listed companies and hollowing out listed companies.

Facing multiple delisting risks

It is noteworthy that the company also faces multiple delisting risks.

On the evening of April 28th, the company issued an announcement about the delisting risk warning of the company’s shares being superimposed, and the company received the Notice on the same day. According to the "Notice", it is found that Xinye Textile has illegal facts such as inflated business income, inflated business cost, inflated inventory, inflated research and development expenses, inflated profits and so on. The aforementioned matters may touch on the situation of forced delisting due to major violations of laws, and the company’s shares may be forced to be delisted due to major violations of laws. At present, the company is verifying the illegal facts and financial data of the Notice, and the final result is subject to the formal decision. The company will continue to pay attention to and disclose relevant information in time after receiving the formal punishment decision.

There are other risks of termination of listing in the company’s stock. On the evening of April 28th, the company announced that the matters that caused the company’s 2022 financial report to be unable to express opinions by audit institutions included: correction of accounting errors in the previous period, major defects in internal control of financial reports, and major uncertainties related to going concern. The company’s 2023 annual financial report is intended to be issued by the audit institution with non-standard opinions, thus touching the delisting situation.

At the same time, according to the relevant regulations, listed companies that only issue A shares in Shenzhen Stock Exchange will be terminated if the daily closing price of their shares is lower than that of 1 yuan for 20 consecutive trading days. As of the disclosure date of this announcement, the closing price of the company’s shares has been lower than that of 1 yuan for 18 consecutive trading days. If the closing price of the company’s shares is lower than that of 1 yuan for 20 consecutive trading days, the company’s shares will be terminated from listing, and investors will be reminded to pay attention to investment risks.

Up to now, the company has not disclosed the 2023 annual report. According to the suggestive announcement issued by the company on April 26 on delaying the disclosure of the 2023 annual report, the 2023 annual report of the company postponed the disclosure date to April 30. According to the company’s announcement on April 28th, the company’s 2023 annual financial report is intended to be audited by an audit institution with non-standard opinions, thus touching the delisting situation. From this calculation, the company may first touch the financial delisting index.

"The above-mentioned cases have released the heavy signal that the CSRC insists on cracking down on financial fraud. Through this case, we find that securities supervision and law enforcement is by no means a "three cups of fines", let alone a "break the money to avoid disaster" and get rid of it once. It will help to rebuild a good market ecology by attacking counterfeiters who try their own laws and hitting "don’t dare to do it again", which will make them learn a lesson and remember for a long time, especially for vicious illegal acts such as financial fraud. Lv Chenglong, an associate professor at Shenzhen University Law School, thinks.

Lv Chenglong also said that at present, with the start of a new round of delisting reform, the number of "delisting contacts" for financial fraud has increased. Among them, the revision of the delisting rules proposes to strictly apply the scope of major illegal delisting, lower the threshold for two years of financial fraud to trigger major illegal delisting, and add one year of serious fraud and years of continuous fraud delisting. "In the future, these measures will help build a safe, standardized, transparent, open, dynamic and resilient capital market." Lv Chenglong said.

The chairman of Guangxi Yicheng Investment Company took bribes of 4.93 million yuan and donated 500,000 yuan to his hometown.

On August 20th, Feng Rong Zhen was sentenced to 12 years’ imprisonment by Fangchenggang Intermediate People’s Court for gambling. @ Guangxi News Network

Fangchenggang, Guangxi Zhuang Autonomous Region, with its back to the southwest and facing Southeast Asia, has experienced rapid economic development and rapid urban construction in recent years with its special geographical advantages along the coast. With the large-scale development of urban construction, corruption has also been quietly bred. Feng Rong Zhen, former chairman and general manager of Fangchenggang Urban Construction Investment Co., Ltd. (hereinafter referred to as Urban Investment Company), embarked on the road of corruption in the process of urban road construction. Feng Rong Zhen’s bribery case, which was investigated and prosecuted by Fangchenggang City Procuratorate, was recently pronounced by the court in the first instance. Feng Rong Zhen was sentenced to 12 years’ imprisonment for accepting bribes of 4.93 million yuan and confiscated 500,000 yuan of personal property.

The road has been transformed into a "road to collect money"

Beibu Gulf Avenue (formerly Xinggang Avenue) in Fangchenggang City is the main road of the city. It comes out of the toll station in Fangchenggang City and directly enters Beibu Gulf Avenue. In order to meet the needs of urban development, in 2010, Fangchenggang Municipal Government decided to completely transform the original Xinggang Avenue to improve the overall taste of the city.

Fangchenggang City Investment Company is a wholly state-owned enterprise invested and established by the municipal government. Its business scope mainly includes: construction investment and management of urban infrastructure projects, comprehensive development of real estate, wholesale and retail of building and decoration materials, nursery stock management and greening project undertaking, etc. It is also the owner of the above-mentioned Xinggang Avenue reconstruction project. Feng Rong Zhen, the chairman and general manager of the company, holds the important decision-making power in the construction, project payment, completion acceptance, project settlement and other aspects of the project, and is of course the object of public relations of many bosses of the project construction party.

In two blocks of road reconstruction project from Yuluoling to Daoshuiao on Xinggang Avenue, a construction engineering company is the contractor, and Ma is the manager of the contractor. Feng Rong Zhen and Ma know each other because of their business ties. In order to get Rong Zhen’s attention, Ma often sends some gifts to bring them closer together.

One night in May 2011, Ma called Feng Rong Zhen and said that he would send some tea, and agreed to meet him at Taoyuan Street in the port area. Rong Zhen drove to Taoyuan Street and stopped. When Ma saw that Rong Zhen’s car arrived, he came to Rong Zhen’s car with a schoolbag and said, "Mr. Feng, this is the tea I gave you." Say that finish and left. Holding this heavy schoolbag, Feng Rong Zhen knew it well. When he opened it, he found that there was RMB cash in 100 yuan denomination, and each bundle was bound with plastic tape, making a total of 1 million yuan in cash.

Why did Ma send 1 million yuan in cash? There is not much communication between them. Afterwards, Feng Rong Zhen said: Maybe because I am the chairman and general manager of the city investment company, I will send money to me in order to get my care in the construction, project payment, completion acceptance and project settlement of the project. However, Ma has never verbally asked me for any care and help, and I have never deliberately taken care of or made things difficult for Ma or the construction party in my work. In Feng Rong Zhen’s view, even accepting money, as long as it is not deliberately taken care of at work, is not a bribe.

As a matter of fact, Feng Rong Zhen took care of the construction party in the process of organizing two blocks of projects, and received a total of 1.47 million yuan from Ma, the person in charge of the construction party, for six times.

In addition, Feng Rong Zhen also took care of the construction party in other bid projects, and received 560,000 yuan and 200,000 yuan from two other construction party leaders, Yang and Liu, five times.

The reconstruction project of Xinggang Avenue has become a "way to collect money" for Rong Zhen. After the completion of the project, there are serious quality problems, especially the section from Yuluoling to Daoshui ‘ao. Not long after the renovation, the pavement is pitted and uneven, which seriously affects the travel of citizens and the overall image of the city. The masses are quite complaining about this.

Bonded Logistics Center in Fangchenggang City

Building a "road network" is good for "fishing" money

In the process of urban construction in Fangchenggang City, "road network engineering" is a word with high frequency. The owners of major road network engineering such as "three horizontal and two vertical" road network engineering in the administrative center area and the road network engineering in the municipal bonded logistics center are all Fangchenggang City Investment Company. As the head of the company, Feng Rong Zhen will naturally receive many "sugar-coated shells".

One afternoon before the Spring Festival in 2010, Liu, the owner of the road network project, called to meet Rong Zhen. After the meeting, Liu took out two bags of things from the car and put them in the trunk of Rong Zhen’s car. He said, "Mr. Feng, this is 2 million yuan in cash, of which 800,000 yuan was returned to you by a friend of yours, and the other 1.2 million yuan is my own gift." Liu left after he finished speaking.

Rong Zhen didn’t say much and didn’t check the money, so he took it back to Fangchenggang and lent it to his brother to run his personal business. Feng Rong Zhen knows very well that the money came entirely for his own rights. Liu is the manager of the construction party of Fangchenggang’s "three horizontals and two verticals" road network project and Fangchenggang Bonded Logistics Center road network project. Liu wants to be taken care of in terms of project construction, project payment, completion acceptance and project settlement before sending this 1.2 million yuan.

After verification, in addition to the above-mentioned road network project, Feng Rong Zhen took care of the construction party in the process of organizing the construction of a bid section of North-South Avenue, the earthwork project of Fangchenggang Vocational Education Center, the Bailu Park project, and the road reconstruction project of Yuluoling-Daoshuiao section of Xinggang Avenue, and received a total of 2.5 million yuan from Liu, the person in charge of the construction party, three times.

Feng Rong Zhen not only lavished money on big projects, but also spared some small projects. Feng Rong Zhen gave convenience to the project contractor in the process of purchasing and installing weak current system engineering equipment for Fangchenggang City Investment Company’s comprehensive building project, and accepted 100,000 yuan; In the process of building a bid section of Dongwan Avenue in Fangchenggang City, he gave convenience to the project contractor Yang and accepted 100,000 yuan in cash.

500,000 yuan of stolen money was donated to my hometown.

In 2014, the procuratorate of Fangchenggang launched a massive special campaign to crack down on duty crimes in state-owned enterprises. During this campaign, nine people, including Feng Rong Zhen, chairman and general manager of Fangchenggang City Investment Company, and Zhang Hengyu, deputy general manager, were investigated for criminal responsibility.

Feng Rong Zhen was born in an ordinary family in Gongcheng County, Guilin. He was determined to get ahead from an early age, and then he was admitted to the university through hard work and worked as a postgraduate. Because of his outstanding work performance, Feng Rong Zhen had a smooth career path. At the age of 31, he was appointed as the director of Fangchenggang Fangcheng District Construction Bureau. Before he was 40, he became the chairman and general manager of Fangchenggang Urban Construction Investment Co., Ltd., a member of the party group of the Municipal Development and Reform Commission, and the deputy director and deputy director of the municipal major project construction office. Because of the struggle as a child, Feng Rong Zhen has a deep affection for his hometown, and he never forgets what he can do for his hometown. In fact, Rong Zhen also took action, but in a shameful way.

In the process of investigating Feng Rong Zhen’s case, when tracing the whereabouts of the stolen money, a sum of stolen money attracted everyone’s attention: from 2010 to the end of 2013, Feng Rong Zhen invested about 500,000 yuan in building bridges, roads and Little Square in his hometown of Gongcheng County, and the money was paid by his brother Feng.

The 4.93 million yuan illegally accepted by Feng Rong Zhen was mainly used for buying houses, investing in mining partnerships and personal consumption, in addition to investing in public welfare undertakings. Feng Rongzhen spent 1.4 million yuan to buy a property in Nanning at the end of 2009; In 2012, in my hometown of Gongcheng County, I invested 500,000 yuan to mine in partnership with my relatives.

In the investigation stage, the case-handling organ recovered 489,000 yuan from Feng Rong Zhen’s bank account and stock account, and recovered 100,000 yuan from others, and his relatives withdrew 300,000 yuan from the court during the trial stage, and a total of 889,000 yuan was withdrawn before and after Feng Rong Zhen.

On February 2nd this year, Feng Rong Zhen’s suspected bribery case was heard in the Fangchenggang Intermediate People’s Court. Facing the accusation of the procuratorate, Feng Rong Zhen confessed his criminal facts. Because he voluntarily surrendered himself and truthfully confessed his criminal behavior, he pleaded guilty with a good attitude and withdrew part of the money, the court finally gave him a lighter punishment and made the above judgment according to law.

When the gavel fell, Feng Rong Zhen’s expression was dim, and his hard work and high spirits were all gone with a verdict.

The BMW i4 was launched in the world, with a starting price of about 353,000 yuan.

Today, BMW officially released the new pure electric medium-sized car i4, which includes two models, namely, the BMW i4 eDrive40 and the BMW i4 M50. At the same time, the prices of the two models were announced. The starting price of the 2022 BMW i4 eDrive40 was 55,400 US dollars (about 353,000 yuan), and the starting price of the 2022 BMW i4 M50 was 65,900 US dollars (about 420,000 yuan). The new car will be launched in the first quarter of 2022. 

BMW i4 eDrive40 adopts a kidney-shaped semi-closed air intake grille in appearance, which has a strong visual impact. The slip-back roof line and double waistline design make the whole body look more dynamic. 

In terms of body size, the length, width and height of the new car are 4785mm, 1852mm and 1448mm respectively, the wheelbase is 2856mm, the front/rear wheel tracks are 1600/1630mm respectively, and the drag coefficient is only 0.24cd. 

Also unveiled with the BMW i4 eDrive40 is the first pure electric M-department product-i4M50. The front enclosure of the new car has been redesigned, and there are air guides designed for brake cooling on both sides of the front bumper, which are decorated with carbon fiber. In addition, the new car’s double five-spoke rims, side skirts and Portiman blue are all unique designs. 

The interior of BMW i4 has a strong family gene, and the standard T-shaped center console obviously leans towards the driver in the central part. The most eye-catching part is the double screen standing on the center console, which adopts curved design. The size of the touch screen is 14.9 inches, and the size of the full LCD instrument is 12.3 inches. At the same time, it is also equipped with a new BMW iDrive 8.0 system.

In terms of power, the BMW i4 eDrive40 has a maximum power of 340 HP, a peak torque of 430 Nm, and an acceleration time of 5.7 seconds at 0-100 km/h.. The battery pack has a capacity of 80.7 kWh and a cruising range of 590 km.

The BMW i4 M50 has a maximum power of 544 HP and a peak torque of 795 Nm. The acceleration time of 0-100 km/h is 3.9 seconds, and the cruising range reaches 510 km.

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