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中国科学技术大学博士生导师教师师资介绍简介-李文卫

本站小编 Free考研考试/2021-04-21

李文卫
单位:环境科学与工程系
地址:安徽省合肥市金寨路96号
邮编:230026
电话:86-
个人主页: http://ese.ustc.edu.cn/lwwjs/list.htm
实验室介绍: https://www.x-mol.com/groups/li_wenwei


个人简历 Personal resume


青年****;国家优秀青年基金获得者;Chemical Engineering Journal副主编、《环境化学》编委。研究方向为水污染控制与资源化,主要集中于污染物生物转化及高级氧化降解的基础理论与技术研究。相关成果已发表SCI论文100余篇,其中近5年以第一/通讯作者在Nature Protocols、Chem Soc Rev、JACS、ACS Nano、Energ Environ Sci、Environ Sci Technol等发表SCI论文43篇,包括影响因子大于10的论文9篇;参与撰写了5部由Elsevier和Spring等公司出版的英文专著;获得国家发明专利授权6项。目前任国际水协会水中毒物评估与控制专家组管理委员会成员、中国水协青年委员会常委。


研究方向 Research direction


1、电活性微生物的电子传递及污染物转化
2、膜法水处理技术
3、光/电化学水处理技术



招生信息 Enrollment information


环境科学、环境微生物或环境化学专业背景


论文专著 The monograph Researcher ID


1)Reuse water pollutants(comments) - Nature - 2015 - 528: 29-31
2)High-sensitivity infrared attenuated total reflectance sensors for in situ multicomponent detection of volatile organic compounds in water - Nature Protocols - 2016 - 11: 377–386
3)A plate-based electrochromic approach for the high-throughput detection of electrochemically active bacteria - Nature Protocols - 2014 - 9: 112-119
4)Directed bio-fabrication of nanoparticles through regulating extracellular electron transfer - The Journal of American Chemical Society. - 2017 - 139: 12149-12152
5)Cathodic catalysts in bioelectrochemical systems for energy recovery from wastewater - Chemical Society Reviews - 2014 - 43: 7718-7745
6)Towards sustainable wastewater treatment technologies by using microbial fuel cells–centred technologies - Energy & Environmental Science - 2014 - 7 (3): 911-924
7)Substrate Metabolism-Driven Assembly of High-Quality CdSxSe1–x Quantum Dots in Escherichia coli: Molecular Mechanisms and Bioimaging Application - ACS Nano - 2019 - DOI: 10.1021/acsnano.9b01581
8)Novel online monitoring and alert system for anaerobic digestion reactors - Environmental Science & Technology - 2011 - 45 (20), 9093-9100
9)Selenium Stimulates Cadmium Detoxification in Caenorhabditis elegans through Thiols-mediated Nanoparticles Formation and Secretion - Environmental Science & Technology - 2019 - 53: 2344–2352
10)Utilization of microbe-derived electricity for practical application - Environmental Science & Technology - 2014 - 48: 17-18
11)Carbon nanotubes alter the electron flow route and enhance nitrobenzene reduction by Shewanella oneidensis MR‑1 - Environmental Science & Technology Letters - 2014 - 1 (1): 128–132.
12)Roles of extracellular polymeric substances in enhanced biological phosphorus removal process - Water Research - 2015 - 86: 85-95
13)Stimulating sediment bioremediation with benthic microbial fuel cells - Biotechnology Advances - 2015 - 33 (1): 1-12
14)From wastewater to bioenergy and biochemicals via two-stage bioconversion processes: A future paradigm - Biotechnology Advances - 2011 - 29: 972-982
15)Nitrate formation from atmospheric nitrogen and oxygen photocatalysed by nano-sized titanium dioxide - Nature Communications - 2013 - 4: 2249
16)IR-ATR chemical sensors based on planar silver halide waveguides coated with an ethylene/propylene copolymer for detection of multiple organic contaminants in water - Angewandte Chemie International Edition - 2013 - 52: 2265-2268
17)Fates of Chemical Elements in Biomass during Its Pyrolysis - Chemical Reviews - 2017 - 117 (9): 6367-6398
18)Harvest and utilization of chemical energy in wastes by microbial fuel cells - Chemical Society Reviews - 2016 - 45, 2847-2870
19)Cyano-rich mesoporous carbon nitride nanospheres for visible-light-driven photocatalytic degradation of pollutants - Environmental Science: Nano - 2018 - 5: 2966 - 2977
20)Insights into enhanced current generation of an osmotic microbial fuel cell under membrane fouling condition - Journal of Membrane Science - 2016,2 - 504: 40-46.



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