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王颖 ,教授,博士生导师。 致力于水体中新型污染物高效去除同时能源回收的新材料与新技术、水体污染物微界面环境行为过程研究。主持国家自然科学基金、国家国际合作专项项目、水专项任务等20余项项目课题研究工作,在AppliedCatalysis B: Environmental, Water Research 等发表论文70余篇,最高影响因子19以上,授权国家发明专利10项,获省部级奖励2项,入选“全球顶尖前10万科学家”榜单(全球学者库,2021)。 2003.9-2006.9 中国科学院生态环境研究中心,理学博士 2000.9-2003.7北京化工大学环境工程系,工学硕士 1996.9-2000.7 北京化工大学环境工程系,工学学士 2021.7-至今,北京师范大学环境学院,教授 2011.7-2021.6,北京师范大学环境学院,副教授 2013.12-2015.1 美国佐治亚理工学院,访问学者 2008.6-2011.6,北京师范大学环境学院,讲师 2006.7-2008.6,北京师范大学环境学院博士后流动站,博士后 环境污染控制工程,饮用水安全保障原理与技术 国家自然科学基金:基于电子高效定向传递的太阳光催化-反向电渗析降解有机物还原二氧化碳同时除碳产能的机理研究,2020-2023,项目负责人 国家自然科学基金:石墨烯掺杂光电芬顿催化剂-介孔粒子电极及其加速电子转移协同催化PPCPs类污染物的机理研究,2016-2019,项目负责人 河北省重点研发计划国际科技合作专项项目:太阳光响应光催化深度净化污水高效光催化剂的联合研发,2018-2020,项目负责人 水体污染控制与治理科技重大专项课题(2018ZX07110004):白洋淀生态清淤关键技术研究与资源化工程示范2018-2020,任务负责人 国家国际科技合作专项项目:“吸附-常温催化氧化”深度净化煤化工污水的合作研究(项目编号:2013DFR90290)2013-2016,项目负责人 国家自然科学基金:天然溶解性有机质对锑-疏水性有机物复合污染体系在沉积物上吸附-解吸的影响规律和机理(批准号:21177013)2012-2015,项目负责人 国家自然科学基金:漆酶电活化及其催化电化学降解水中有机污染物的原理和方法(No. 50708007 ) 2008-2010,项目负责人 美国国家地理空气与水保护基金: The NationalGeographic Society of America, An innovative integration process forsimultaneous treatment of refractory organic wastewater and recovery energy.2016-2017 国家973计划课题资助项目:重大水利工程影响下河口水环境过程与效应,(课题资助号:2010CB429003)2010-2014,项目骨干 中央高校基本科研业务费专项资金:表面铜鳌和磁性二氧化硅固定化漆酶及其催化降解水中有机污染物,2011-2012,项目负责人 中国博士后科学基金一等资助项目:电化学-化学催化还原水中硝酸根的复合新工艺研究(No. 20070410039 ) 2007-2008,项目负责人 国家重点基础研究发展计划(973计划):长江流域水沙产输对水质变化影响(No.2003CB415204 ) 2003-2008,学术骨干 国家高技术研究发展计划(863计划):漆酶-光催化降解水中氯酚类污染物的复合新工艺研究(No. 2006AA06Z323),2007-2009,学术骨干 国家水体污染控制与治理科技重大专项(水专项):白洋淀流域污染负荷削减技术与工程示范 (NO. 2008ZX07209-007),学术骨干 2020年,北京市科技进步二等奖; 2009年度教育部科技进步一等奖; 2021年,北京师范大学彭年杰出青年教师奖; 2022年,入选”全球顶尖前10万科学家排名榜“(全球学者库) 2019年,北京师范大学优秀新生导师 2020 年,第二届北京市大学生节能节水低碳减排社会实践与科技竞赛,优秀指导教师

研究领域

(1)水污染控制同时能源回收新材料与新技术 (2)水体中污染物的环境行为过程

近期论文

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1. Wen Yang, Ying Wang * . Enhanced electron and mass transferflow-through cell with C3N4-MoS2 supported on three-dimensional graphenephotoanode for the removal of antibiotic and antibacterial potencies inampicillin wastewater. Applied Catalysis B: Environmental, 2021, 282:119574-119588 2. Hailong Tian, Ying Wang*, Yuansheng Pei, John C. Crittenden.Unique applications and improvements of reverse electrodialysis: a review andoutlook. Applied energy. 2020, 262,15:114482 IF8.424 3. Hailong Tian, Ying Wang*, Yuansheng Pei. Energy capture from thermolyticsolutions and simulated sunlight coupled with hydrogen peroxide production andwastewater remediation. Water research. 2020, 170, 1-12. 4.Mingxing Liang, Ying Wang*, Yajing Yu, Yan Yu. Design of a Z-scheme g-C3N4/CQDs/CdIn2S4composite for efficient visible-light-driven photocatalytic degradation ofibuprofen . Environmental Pollution, 2020 5. Mingxing Liang, Yajing Yu, Ying Wang*, Yan Yu. Remarkablyefficient charge transfer through a double heterojunction mechanism by aCdS-SnS-SnS2/rGO composite with excellent photocatalytic performance undervisible light, Journal of Hazardous Materials, 2020 6.WenYang, Jun Yan, Ying Wang * , BoTao Zhang, HongJie Wang. The seasonal variation of aquatic macrophytes and itsrelationship with environmental factors in Baiyangdian Lake, China. Scienceof the Total Environment. 2019. 7.YingWang*, Yaoye Xi, Hailong Tian, Jiasheng Fang, Xiangchun Quan,Yuansheng Pei. Effects of reaction conditions and liquid property on degradation of phenol by RGO/α-FeOOH supported on Al-MCM catalyst in heterogeneous photo-Fenton. Catalysis today, 2019 8. Manman Zhang, Ying Wang*, Peng Liang, Xu Zhao, Mingxing Liang, Bin Zhou. Combined photoelectrocatalytic microbial fuel cell (PEC-MFC) degradation of refractory organic pollutants and in-situ electricity utilization. Chemosphere. 2019, 214, 669-678. 9.Yi Zhou, Kai Zhao, Chengzhi Hu*, Huijuan Liu, Ying Wang*, Jiuhui Qu. Electrochemical oxidation of ammonia accompanied with electricity generation based on reverse electrodialysis. Electrochimica Acta 2018, 269: 128-135. 10. Ying Wang*, Hailong Tian, Yange Yu, Chengzhi Hu. Enhanced catalytic activity of α-FeOOH-rGO supported on active carbon fiber (acf) for degradation of phenol and quinolone in the solar-fenton system. Chemosphere. 2018, 208, 931-941. 11.Yifan Zhang, Xiaoyue Jin, Ying Wang, Yange Yu, Guijun Liu, Zhanbin Zhang, Wenbin Xue. Effects of experimental parameters on phenol degradation by cathodic microarc plasma electrolysis. Separation and purification technology, 2018, 201: 179-185. 12.Ying Wang*, Mingxing Liang, Jiasheng Fang, Jun Fu, Xiaochun Chen. Visible-light photo-Fenton oxidation of phenol with rGO-α-FeOOH supported on Al-doped mesoporous silica (MCM-41) at neutral pH: Performance and optimization of the catalyst. Chemosphere, 2017, 182: 468-476. 13.Ying Wang*, Jiasheng Fang, John C. Crittenden, Chanchan Shen. Novel RGO/α-FeOOH Supported Catalyst for Fenton Oxidation of Phenol at a Wide pH range using Solar-Light-Driven Irradiation. Journal of hazardous materials. 2017, 329, 321-329. 2017.5 14.Ying Wang*, Yange Yu, Haiyan Li, Chanchan Shen, Jinggang Wang. Comparison study of phosphorus adsorption on different waste solids: Fly ash, red mud and ferric–alum water treatment residues. Journal of Environmental Sciences, 2016, 50, 79-86. 15.Ying Wang*, Chanchan Shen, Manman Zhang, Botao Zhang, Yange Yu, The electrochemical degradation of ciprofloxacin using a SnO2-Sb/Ti anode:Influencing factors, reaction pathways and energy demand, Chemical Engineering Journal, 2016, 296, 79-89. 16. Ying Wang*, Manman Zhang, Di Zhang, Zhen-yao Shen. The Influence of Sediment Particle Size on the Properties of Adsorbed Dissolved Organic Matter in the Yangtze Estuary and Its Interactions with As/Sb. Marine Pollution Bulletin, 2016, 105, 351-358. 17.Ying Wang*, Manman Zhang, Jun Fu, Tingting Li, Jinggang Wang, Yingyu Fu. Insights into the interaction between carbamazepine and natural dissolved organic matter in the Yangtze Estuary using fluorescence excitation-emission matrix spectra coupled with parallel factor analysis. Environmental Science and Pollution Research, 2016(23), 19887-19896. 18. Shou Zhao, Dongxin Wang, Chenghong Feng*, Ying Wang, Zhenyao Shen. Sequence of the main geochemical controls on the Cu and Zn fractions in the Yangtze River estuarine sediments Frontiers of Environmental Science & Engineering, 2016, 10(1), 19-27. 19.Ying Wang*, Yange Yu, Caolin Deng, Jinggang Wang, Bo-TaoZhang. Synthesis of mesoporous MCM-41 supported reduced graphene oxide -Fe catalyst for heterogeneous Fenton degradation of phenol. RSC Advances. 2015, 5, 103989-103998. 20.Ying Wang*, Di Zhang, Zhenyao Shen, Chenghong Feng, Xiao Zhang. Investigation of the interaction between As and Sb species and dissolved organic matter in the Yangtze Estuary, China using excitation-emission matrices with parallel factor analysis. Environmental Science and Pollution Research, 2015, 22, 1819-1830. 21.Ying Wang*, Chanchan Shen, Zhenyao Shen, Di Zhang, John C. Crittenden. Spatial variation and sources of polycyclic aromatic hydrocarbons (PAHs) in surface sediments from the Yangtze Estuary, China. Environmental Science: Processes & Impacts, 2015, 17, 1340 -1347. 22. Jinxian Huo, Zuopeng Li, Ying Wang. Preparation and Characteristics of Novel Fibers Based on Cellulose Acetate and Soy Lecithin for Attracting and Binding POPs. Journal of Geoscience and Environment Protection, 2015, 3, 1-8 23.Ying Wang*, Di Zhang, Zhenyao Shen, Jing Chen, Chenghong Feng. Characterization and spacial distribution variability of chromophoric dissolved organic matter (CDOM) in the Yangtze Estuary, Chemosphere, 2014, 95, 353-362. 24.Ying Wang*, Di Zhang, Zhenyao Shen, Chenghong Feng, Jing Chen. Revealing Sources and Distribution Changes of Dissolved Organic Matter (DOM) in Pore Water of Sediment from the Yangtze Estuary. Plos one, 2013, 8(10), e76633. 25.Ying Wang*, Xiaochun Chen, Jie Liu, Furong He, Ran Wang. Immobilization of laccase by Cu2+ chelate affinity interaction on surface modified magnetic silica particles and its use for the removal of 2,4-dichlorophenol" Environmental Science and Pollution Research, 2013, 20, 6222-6231. 26.Jing Shang, Jing Chen, Zhenyao Shen, Ying Wang, Aidong Ruan. Effects of varying estuarine conditions on the sorption of phenanthrene to sediment particles of Yangtze Estuary. Marine pollution bulletin, 2013, 76(1-2), 139-45. 27.Xue Li, Ying Wang*, Baohua Li, Chenghong Feng, Yaxin Chen, Zhenyao Shen. Distribution and Speciation of Heavy Metals in Surface Sediments from the Yangtze Estuary and Coastal Areas. Environmental earth sciences. 2013, 69(5),1537-1547. 28. Ying Wang, Xiaochun Chen, Jie Liu, Furong He, Ran Wang. Immobilization of laccase by Cu2+ chelate affinity interaction on surface modified magnetic silica particles and its use for the removal of 2,4-dichlorophenol" Environmental Science and Pollution Research. (DOI: 10.1007/s11356-013-1661-6 29. Ying Wang, Xue Li, Baohua Li, Zhenyao Shen, Chenghong Feng, Yaxin Chen. Characterization, sources and potential risk assessment of PAHs in surface sediments from nearshore and farther shore zones of the Yangtze estuary, China. Environmental Science and Pollution Research. 2012, 19(9): 4148-4158 . 30. Xue Li, Ying Wang, Baohua Li, Chenghong Feng, Yaxin Chen, Zhenyao Shen. Distribution and Speciation of Heavy Metals in Surface Sediments from the Yangtze Estuary and Coastal Areas. Environmental earth sciences. DOI: 10.1007/s12665-012-1988-1 31. Ying Wang, Di Zhang, Furong He, Xiaochun Chen. Immobilized of laccase by Cu2+ chelate affinity interaction on surface modified magnetic silica particles and its use for the removal of pentachlorophenol. Chinese Chemical Letters, 2012, 23(2): 197-200. 32. Ying Wang, Zhenyao Shen, Yang Li, Junfeng Niu. Electrochemical Properties of the Erbium-chitosan-fluorine-modified PbO2 Electrode for the Degradation of 2,4-dichlorophenol in Aqueous Solution. Chemosphere, 2010, 79(10): 987-996. 33. Ying Wang, Zhenyao Shen, Xiaochun Chen. Effects of Experimental Parameters on 2,4-dichlorphenol Degradation over Er-chitosan-PbO2 electrode. Journal of hazardous materials,2010, 178: 867-874. 34. Ying Wang, Zhenyao Shen, Junfeng Niu, Ruimin Liu. Adsorption of phosphorus on sediments from a typical catchment of the Three-Gorges Reservoir (China) and the relation with sediment compositions. Journal of hazardous materials,2009, 162(1): 92-98. 35. Ying Wang, Zhifeng Yang, Zhenyao Shen, Junfeng Niu, Fan Gao. Assessment of heavy metals in sediments from a typical catchment of the Yangtze River, China. Environmental Monitoring and Assessment,2011, 172:407-417. 36. Ying Wang, Zhenyao Shen. Release of phosphorus in sediments from a tributary of the Three-Gorges Reservoir (China) with phosphate-solubilizing bacteria. International Journal of Environment and Pollution. 2011,45:145-156. 37. Zhifeng Yang, Ying Wang, Zhenyao Shen, Junfeng Niu, Zhenwu Tang. Distribution and speciation of heavy metals in sediments from the mainstream, tributaries, and lakes of the Yangtze River catchment of Wuhan, China. Journal of hazardousmaterials.2009,166(2-3):1186-1194. 38. Qiongshan Wang, Mengchang He, Ying Wang. Influence of combined pollution of antimony and arsenic on culturable soil microbial populations and enzyme activities. Ecotoxicology, 2011, 20:9-19. 39. Ying Wang, Yuansheng Pei,Yang Li, Jinxian Huo. The electrochemical hydrodechlorination of 2, 4-dichlorophenol in water and its improvement by combination with chemical catalytic reduction. 3rd International Conference on Bioinformatics and Biomedical Engineering, iCBBE 2009 Beijing, China. 40. Ying Wang, Xue Li, Yuansheng Pei, Jinxian Huo. A novel modified PbO2 electrode for chlorphenol oxidation in water. 4th International Conference on Bioinformatics and Biomedical Engineering, iCBBE 2010 Shanghai, China. 41. Ying Wang, Jiuhui Qu, Huijuan Liu. Effect of liquid property on adsorption and catalytic reduction of nitrate over hydrotalcite-supported Pd-Cu catalyst. Journal of Molecular Catalysis A: Chemical, 2007, 272: 31-37. 42. Ying Wang, Jiuhui Qu, Huijuan Liu, Chengzhi Hu. Adsorption and Reduction of nitrate in Water on hydrotalcite-Supported Pd-Cu Catalyst. Catalysis Today, 2007, 126(3-4): 476-482. 43. Ying Wang, Jiuhui Qu, Rongcheng Wu,Pengju Lei. The electrocatalytic reduction of nitrate in water on Pd/Sn-modified activated carbon fiber electrode. Water Research, 2006, 40(6): 1224-1232. 44. Ying Wang, Jiuhui Qu. The electrocatalytic reduction of nitrate in water with Pd-modified Cu electrode. Water Environment Research, 2006, 78(7): 724-729. 45. Ying Wang, Xia Huang and Qipeng Yuan.Nitrogen and carbon removals from food processing wastewater by an anoxic/aerobic membrane bioreactor. Process Biochemistry, 2005, 40 (5): 1733-1739. 46. Ying Wang, Jiuhui Qu, Rongcheng Wu, Huijuan Liu. Hydrotalcite-Supported Pd-Cu Catalyst for Nitrate Adsorption and Reduction from Water. Chinese Science Bulletin, 2006, 51(12): 1431-1438. 47. Ying Wang, Jiuhui Qu, Huijuan Liu. Preparation and Electrochemical Properties of the Pd-modified Cu Electrode for Nitrate Reduction in Water. Chinese Chemical Letters,2006, 17(1): 61-64. 48. Chengzhi Hu,Huijuan Liu, Jiuhui Qu, Ying Wang. Coagulation and disinfection efficiency of an electrochemically prepared dual-function reagent in municipal wastewater. Journal of Environmental Science and Health, Part A, 2006, 41, 10: 2387-2398. 49. 王颖,牛军峰,张哲?,隆兴兴. 超声-光催化降解水中有机污染物研究进展.化学进展,2008, 20(10): 1621-1627. 50. 王颖,沈珍瑶,牛军峰,呼丽娟. 三峡水库主要支流沉积物的磷吸附/释放特性. 环境科学学报,2008, 28(8): 1654-1661 51. 王颖,曲久辉,武荣成,刘会娟. Pd-Cu/水滑石吸附催化氢还原水中的硝酸根. 科学通报, 2006, 51(7): 785-791. 52. 贺芙蓉,王颖,陈晓春,余光认. 表面铜鳌合磁性二氧化硅固定化漆酶及其催化降解水中2,4-二氯酚. 环境工程学报,2011,5(12):2651-2657. 53. 辛杰,裴元生,王颖. 几种吸附材料对磷吸附性能的对比研究. 环境工程, 2011,29(4):30-34. 54. 王颖,辛杰,李雪,阮爱东. 化学催化还原地下水中硝酸盐的研究进展. 水处理技术, 2010,36(7):14-19. 55. 王颖,吕斯丹,李辛,吴英杰. 去除水体中砷的研究进展与展望. 环境科学与技术, 2010,33(9): 102-107. 56. 李阳,蒋国祥,牛军峰,王颖,呼丽娟. 漆酶催化氧化水中有机污染物. 化学进展, 2009, 21(10): 2028-2036. 57. 王颖,黄霞,袁其朋. 膜-生物反应器处理高浓度有机废水膜污染影响因素的研究. 膜科学与技术2004,24(1): 1-5. 58. 王颖,黄霞,袁其朋,程远. 缺氧/好氧膜-生物反应器处理高浓度含碳和氮工业废水. 现代化工,2002, 22 (8): 47-49. 59. 付军,余艳鸽,赵昱东,王颖 . 模拟日光 - 非均相 Fenton 光催化降解喹啉 . 环境化学 , 2017,36(5): 1072-1082

学术兼职

美国化学会会员(ACS) 担任国际环境科学领域ES&T, Water Research, Chemosphere、The Science of the Total Environment、Journal of Hazardous Materials等期刊的审稿人。 国家自然科学基金评审人

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