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蔡喜运

领域:节能环保产业 学校:大连理工大学职称:教授

主要从事环境污染化学及环境污染控制技术研究,包括:(1) 有机污染物生物有效性过程识别与调控;(2) 土壤污染修复:农药、PAHs等有机污染物土壤残留的临界值或参考值,土壤污染原位修复及源头减量技术与产品;(3) 水污染控制:高选择性环糊精功能材料制备,吸附-催化降解技术开发等深度处理技术与产品;(4) 沼肥(秸秆)-药剂的一体化产品与应用评估。...

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教育背景

1993.9 1997.6 定陶二中、定陶一中 无 2001.9 2006.6 浙江大学 环境科学 博士 1997.9 2001.6 武汉大学 环境工程 学士

工作经历

2006.7 至今 大连理工大学 环境学院 教师

项目课题经历

(一)主持项目(在研) [1] 公益性行业(农业)科研专项项目(No. 201503107):有机化学品污染农田和农产品质量安全综合防治技术方案,承担第三任务“高效低风险环糊精基农药制剂的筛选与优化(No. 201503107-3)”. 2015.01-2019.12. [2] 中央土壤污染防治专项资金:土壤修复药剂研制小试装置平台(辽财指金[2016]876号). 2017.01-2018.12. [3] 国家自然科学基金(No. 21477013):主体化合物对有机污染物生物有效性过程的调控作用及其化ᠦ୔

论文、成果、著作等

代表性论文 [1] Cai XY*, Liu QQ, Xia CL, Shan DN(本科生), Du J, Chen JW. Recyclable capture and destruction of aqueous micropollutants using the molecule-specific cavity of cyclodextrin polymer coupled with KMnO4 oxidation. Environ. Sci. Technol., 2015, 49(15), 9264–9272. (被国际化学学术媒体Chemical & Engineering News进行新闻报道“Chemical Combo Captures And Destroys Micropollutants In Water”,网站链接:http://cen.acs.org/articles/93/web/2015/07/Chemical-Combo-Captures-Destroys-Micropollutants.html;被CEN印刷版精选为环境领域代表性进展进行精选报道;CENEAR 93(33), 32, August 24, 2015)。并被Science and Technology News, (e) Science News, Pollution Solutions, EH&S News (Environmental, Health and Safety News)等国际媒体转载或报道,其中Pollution Solutions将该技术作为“Breaking News”进行报道(New Micropollutant Removal Method Traps and Neutralises Contaminants; http://www.pollutionsolutions-online.com/news/water-wastewater/17/breaking_news/new_micropollutant_removal_method_traps_and_neutralises_contaminants/35642)。 [2] Cai XY*, Xiong WN, Xia TT, Chen JW. Probing the stereochemistry of successive sulfoxidation of the insecticide fenamiphos in soils. Environ. Sci. Technol., 2014, 48(19), 11277−11285. [3] Liu HH, Cai XY*, Chen JW. Mathematical model for cyclodextrin alteration of bioavailability of organic pollutants. Environ. Sci. Technol., 2013, 47(11), 5835-5842. [4] Liu HH, Cai XY*, Wang Y, Chen JW. Adsorption mechanism-based screening of cyclodextrin polymers for adsorption and separation of pesticides from water. Water Res., 2011, 45(11), 3499-3511. [5] Bian HT, Chen JW, Cai XY*, Liu P, Wang Y, Huang LP, Qiao XL, Hao C. Dechlorination of chloroacetanilide herbicides by plant growth regulator sodium bisulfite. Water Res., 2009, 43(14), 3566-3574. [6] Zhang Y, Cai XY*, Lang XM, Qiao XL, Li XH, Chen JW. Insights into aquatic toxicities of the antibiotics oxytetracycline and ciprofloxacin in the presence of metal: complexation versus mixture. Environ. Pollut., 2012,166, 48-56. (毕业设计) [7] Cai XY*, Niu LL(本科生), Zhang Y, Lang XM, Yu YL, Chen JW. Discriminating multiple impacts of biogas residues amendment in selectively decontaminating chloroacetanilide herbicides. J. Agric. Food Chem., 2011, 59(20), 11177-11185. (毕业设计) [8] Cui N(本科生), Zhang XX, Xie Q, Wang S(本科生), Chen JW, Huang LP, Qiao XL, Li XH, Cai XY*. Toxicity profile of labile preservative bronopol in water: the role of more persistent and toxic transformation products. Environ. Pollut., 2011, 159(2), 609-615. (创新实验+毕业设计) [9] Bian HT, Chen JW, Cai XY*, Liu P, Liu HH, Qiao XL, Huang LP. Inclusion complex of butachlor with β–Cyclodextrin: characterization, solubility and speciation-dependent adsorption. J. Agric. Food Chem., 2009, 57(16), 7453-7458. [10] Cai XY, Sheng GY, Liu WP. Degradation and detoxification of acetochlor in soils treated by organic and thiosulfate amendments. Chemosphere, 2007, 66(2), 286-292.

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