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Zhou Pei's main achievements
At present, the main scientific research projects under research include 973 major basic research projects "Study on the formation mechanism and ecological restoration of environmental pollution in the old industrial base of Northeast China (2004CB4 18503)" and the key project of National Natural Science Foundation "Eco-chemical process and restoration principle of typical pollutants in the environment (203370 10)". The national natural science foundation's key general project "research on functional preparation of chlorfenapyr and its biological effect and environmental degradation model (20377029)", Shanghai scientific and technological key project "key technologies of circular eco-agriculture demonstration park", "improvement and popularization of Chongming ecological agriculture and food safety laboratory platform", Shanghai scientific and technological key project "nano-biological effect and application platform construction in agricultural environment (0452nm092)" and international cooperation projects.

He has published more than 40 papers and monographs 1 in domestic journals such as Science in China Series C-Life Sciences, Journal of Agriculture and Food Chemistry, Chemosphere, and won 3 national invention patents. Won the first prize of Shanghai Science and Technology Progress Award 1, the first prize of Shanghai Science and Technology Promoting Agriculture Achievement Award 1, the second prize of Shanghai Science and Technology Progress Award 1, and the third prize of Shanghai Science and Technology Progress Award. Trained 10 graduate students. 2011.01-2013.12, the general project of National Natural Science Foundation of China, "Study on Nitrate Assimilation Mechanism of Bacillus megaterium NCT-2 in Secondary Saline Soil", project number: 3/kloc-0.

2009.01-2013.12, special fund project of public welfare industry (agriculture), "Study on urban agricultural production structure and breeding mode", project number: 200903056, chief expert;

2008.10-2011.09, a sub-project of Shanghai key scientific and technological research project "Research and application demonstration of key technologies for reducing pesticide and fertilizer consumption", project number: 08DZ 1900404, project leader;

2007.12-2009.11,scientific research project of Shanghai science and technology commission "Study on bioremediation and regulation mechanism suitable for reclaimed soil", project number: 07JC 14025, project leader;

August 20, 200710.10, the national high-tech research and development plan (863 plan) project, "Research and development of rapid immunoassay technology for harmful heavy metals in agricultural products and their environment", project number: 2007AA 10Z44 1, the project is in charge.

2005. 1 1-2007.09, the international cooperation project of Shanghai Municipal Science and Technology Commission "Study on Biotoxic Effect Analysis and Safety Evaluation of Nano-pesticides", project number: 053407054, project leader;

2004. 12-2006. 12, the scientific research plan project of Shanghai science and technology commission "nano-biological effect and application platform construction in agricultural environment", project number: 0452nm092, project leader. National invention patent, preparation of polyclonal antibody against heavy metal mercury and its enzyme-linked immunosorbent assay method, application date: 2010.07.16;

National invention patent, method for generating spatial variation distribution map of heavy metal content in reclaimed soil, application date: 2009.11.12;

National invention patent, rapid detection card for pesticide environmental pollution diagnosis and its manufacturing method, authorized announcement date: April, 2006 19;

National invention patent, immunoassay method of carbofuran pesticide nano colloidal gold label, authorized announcement date: May 25, 2005;

National invention patent, gold-labeled immunoassay paper for rapid detection of carbofuran, authorized announcement date: February, 2005 16. [1] Zhou Pei, Yi Tong Lu *, Zhu Jiang, Hong Jingbo,,, Dangong, Angel Montoya. Immunoassay of colloidal gold nanoparticles for the detection of N- methyl carbamate pesticide carbofuran. Food chemistry. 2004, 52, 4355-4359.

[2] Zhou Pei, Lu Yitong *, Liu Baofeng, Jie J. Gan. Residue dynamics of fipronil in vegetable field ecosystem, Chemosphere 57 (2004)1691-1696.

[3] Zhou Pei, Liu Baofeng and Lu Yitong *. Micronucleus test and single cell gel electrophoresis were used to study the DNA damage effect of carbofuran and its main metabolites on mice. Life Science 2005(48) Supplement 1: 40-47.

[4] Xu Lurong, *, Zhi Yuee, etc. Three new flavonol glycosides from Derris trifoliata, Asian Journal of Natural Products Research, 2009,11(1): 79-84.

[5], *, Zhou Pei *, Jia-,,Miao Zhiyuan. Effects of Vegetation Coverage on Phosphorus Loss in Purple Soil Slopes under Simulated Rainfall: A Case Study of China, Nutrient Cycle in Agro-ecosystem, 2009, 85: 263-273.

[6], *, Liang Mao, Yue Erzhi,, Shi. e? Effects of plant coexistence on soil enzyme activity and soil microbial community structure under combined pollution of Cd and Pb, Journal of Environmental Science. 20 10, 22(7): 1040- 1048.

[7], *, Liang Mao, Shi, Zhu Yuee. Physiological changes of cadmium and Solanum nigrum extracted from plants as a new type of cadmium hyperaccumulator, Russian Journal of Plant Physiology, 20 10/0,57 (4): 501-508.

[8], Tao, Wu Xu, Liu, Zhu Yuee, *, Cao Cheng *. A new hapten, mercuric thiopenilate, synthesized by penicillin and used for correlation immunoassay, Journal of Immunological Methods, 20 10(353): 1-7.

[9] Fan, Li, Cao Chengxi *, Li and Deng. Quantitative study on moving chelating boundary in continuous sample purging system based on EDTA in capillary electrophoresis, Electrophoresis, 2008(29): 3989-3998.

Shi Wanjun, Wei, Yan, Tong, Song, Effect of nano insecticide chlorfenapyr on mice. Toxicology and chemistry. Environmental Chemistry, 20 10/0,92 (10):1901-1907.

[1 1] Wu Yuangen, Zhan Shenshan, Xu Lurong, Shi Weiwei, Tao, Zhan He *. A simple and unmarked sensor for detecting mercury (II) in aqueous solution by malachite green based on resonance scattering spectrum analysis. Chemical newsletter, 20 1 1, 47: 6027-6029.

[12] Fang Xinkui, Huang Danfeng, Zhao-,,,Wang-,,,,Qiao Zhongdong *. Identification of cytochrome P450 related proteins of Spodoptera litura cell line induced by fenvalerate. Toxicology of Cell Biology, 2007, 23: 445-457.

Levin *, Zhou Pei, Liang Mao, Yueerzhi, Wan. Evaluation of the effect of combined pollution of heavy metals on soil enzyme activity and microbial community structure: improved ecological dose-response model and PCR-RAPD, Environmental Geoscience, 20 10, 60: 603-6 12.

[14]*, Miao, Liang Mao, Jin Zhiguo, Shi. Using cadmium-tolerant strains and citric acid to improve plant extraction and antioxidant defense of Solanum nigrum under cadmium stress. Journal of Hazardous Materials, 20 10,181:771-777.

[15]*, Liang Mao, Miao Zhiyuan,, Jie, Yueerzhi, Wan. Spatial characteristics of soil enzyme activity and microbial community structure under different land use patterns in Chongming Island: geostatistical model and PCR-RAPD method, Total Environmental Science, 20 10, 408: 325 1-3260.

[16] Levin, Zhu Bo *, Wang Tao, Tang Jialiang, Zhou Pei, Miao Zhiyuan. Migration of Bioavailable Phosphorus on Purple Soil Slopes under Natural and Simulated Rainfall Conditions, Environmental Monitoring and Assessment, 2010 (171): 539-550.