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北京师范大学环境学院导师教师师资介绍简介-张承东

本站小编 Free考研考试/2020-04-21

基本信息
张承东,女,博士,教授,博士生导师。研究方向为环境污染物的生物效应、毒性机制及生物修复等。中国环境科学学会环境化学分会第五届委员。教育部学位评审专家,国家自然科学基金、教育部留学回国人员启动资金、省部级自然科学基金评审专家。国际期刊Environmental Science & Technology, Small, Carbon, BioresourceTechnology, Journal of Hazardous Materials等审稿人。



联系方式
联系地址: 北京市海淀区新街口外大街19号
邮政编码: 100875
Email:zhangchengdong@bnu.edu.cn


研究方向
环境污染物的生物效应、毒性机制及生物修复等



基本信息
张承东,女,博士,教授,博士生导师。研究方向为环境污染物的生物效应、毒性机制及生物修复等。中国环境科学学会环境化学分会第五届委员。教育部学位评审专家,国家自然科学基金、教育部留学回国人员启动资金、省部级自然科学基金评审专家。国际期刊Environmental Science & Technology, Small, Carbon, BioresourceTechnology, Journal of Hazardous Materials等审稿人。




教育经历
1998,南京大学获环境化学学士学位;
2000,南京大学获环境科学硕士学位;
2006,美国新泽西理工获环境科学博士学位









工作经历
2006-2013 南开大学环境科学与工程学院引进人才,副教授、硕士生导师
2013-2018 南开大学环境科学与工程学院研究员、博士生导师
2018-至今 北京师范大学引进人才,教授、博士生导师





教学信息
本科生课程《环境化学》
研究生课程《环境有机污染化学》





科研项目

国家自然科学基金面上项目《纳米农药对转基因植物生物安全性影响》(主持)(**),2020/01-2023/12。
国家自然科学基金面上项目《纳米抗菌材料对细菌耐药性进化的影响》(主持)(**),2018/01-2021/12。
国家自然科学基金面上项目《富勒烯的环境生物转化、体外代谢及毒性效应研究》(主持)(**),2014/01-2017/12。
国家自然基金委主任基金《富勒烯的生物转化:机理及毒性效应》(主持)(**),2013/01-2013/12。
天津市应用基础与前沿技术研究计划(自然科学基金重点项目)《复合污染条件下内分泌干扰物转运机制及生态修复技术研究》(主持)(13JCZDJC35900),2013/04-2016/03。
国家973课题《典型人工纳米材料的水环境过程、生物效应及其调控研究》子课题(2014CB932001)(主要参加人),2014-2018。
国家自然科学基金重点项目《人工纳米材料对水环境中有机污染物界面过程的影响机制研究》(**)(主要参加人),2013-2017。
教育部高等学校博士学科点专项科研基金《纳米材料吸附态有机污染物的生物有效性及影响机制研究》(主持)(032),2010/01-2012/12。
教育部留学回国人员科研启动基金《土壤中吸附态持久性污染物的生物有效性及降解模型研究》(主持)(教外司留[2008]890号),2008-2009。
天津市应用基础及前沿技术研究计划《纳米碳管与酶的相互作用机制及环境应用研究》(主持)(09JCYBJC26900),2009/09-2012/09。
天津市应用基础及前沿技术研究计划《持久性有毒污染物的原位生物修复技术及生态毒性评价》(主持)(07JCYBJC16300),2007/04-2009/09。
国家高新技术研究发展计划(863计划)重点项目《油田区石油污染土壤生态修复技术与示范》(主要参加人),2007/07-2010/12。




科教成果
代表性学术论著:
Chengdong Zhang*, Yaqi Wang, Huiru Zhao. Is graphene oxide a chemoattractant? Nano Letters, 2020, 20, 1455-1460. (I 区,IF 12.28)
Mingzhu Li, Jing Li, Jing Sun, Yuning He, Pengjia Chen, Chengdong Zhang*. Is sulfidation a true detoxification process forsilver nanoparticles? From the perspective of chronic exposure. Environmental Science: Nano, 2019, 6, 3611 - 3624. (I 区,IF 7.7)
Qiurong Zhang, Meiling Wang, Chuanhui Gu, Chengdong Zhang*. Water disinfection processes change the cytotoxicity of C60 fullerene: Reactions at the nano-bio interface. Water Research, 2019, 163, 114867-78(I 区,IF 7.913).
Mingzhu Li, Yuning He, Jing Sun, Jing Li, Junhong Bai, and Chengdong Zhang*. Chronic exposure to an environmentally relevant triclosan concentration induces persistent triclosan resistance but reversible antibiotic tolerance in Escherichia coli. Environmental Science & Technology, 2019, 53, 3277-3286 (I 区,IF7.149).
Huiru Zhao, Chengdong Zhang*, Yaqi Wang,Wei Chen, Pedro JJ Alvarez. Self-damaging aerobic reduction of graphene oxideby Escherichia coli: Role of GO-mediated extracellular superoxide formation. Environmental Science &Technology, 2018, 52(21), 12783-12791. (I 区,IF 7.149)
Qiurong Zhang, Xiaolei Liu, Hongyan Meng, Sijin Liu and Chengdong Zhang*, Reduction pathway-dependent cytotoxicity ofreduced graphene oxide. Environmental Science: Nano, 2018, 5, 1361-1371. (I 区,IF7.704,hot topic paper)
Ming Gao, Beibei Zhao, Minjun Chen, Yun Liu, Ming Xu, Zhe Wang, Sijin Liu*, Chengdong Zhang*. Nrf-2-driven longnoncoding RNA ODRUL contributes to modulating silver nanoparticle-inducedeffects on erythroid cells. Biomaterials, 2017, 130, 14-27. (I 区,IF 10.273)
Chengdong Zhang*, Xiaoyan Chen. Differenteffects of sonication pretreatment on carbon nanomaterials under low hydrogen peroxide concentrations. Ultrasonics Sonochemistry, 2017, 34, 19-26. (IF 7.279)
Mingzhu Li, Chengdong Zhang*. γ-Fe2O3 nanoparticle-facilitated Bisphenol A degradation by white rot fungus. Science Bulletin, 2016, 61, 468-472. (IF 6.277)
Chengdong Zhang*, Mingzhu Li, XuXu, Na Liu*. Effects of carbon nanotubes on atrazine biodegradation by Arthrobacter sp. Journal of Hazardous Materials, 2015, 287, 1-6. (I 区,IF 7.650)
Rang Pang, Mingzhu Li, Chengdong Zhang*.Degradation of phenolic compounds by laccase immobilized on carbon nanomaterials: Diffusional limitation investigation. Talanta, 2015, 131, 38-45.(IF 4.916)
Chengdong Zhang*, Silong Chen, Pedro JJ Alvarez, Wei Chen. Reduced graphene oxide enhances horseradish peroxidase stability by servingas radical scavenger and redox mediator. Carbon, 2015, 94, 531-538. (I 区,IF7.466)
Chengdong Zhang*, Mingzhu Li, Xiaoyan Chen, MingchunLi*. Edible fungus degrade Bisphenol A with no harmful effect on its fatty acidcomposition. Ecotoxicology and Environmental Safety, 2015, 118, 126-132. (IF 4.527)
Chengdong Zhang*, Wei Chen, PedroJ J Alvarez*. Manganese peroxidase degrades pristine but not surface-oxidized (carboxylated) single-walled carbon nanotubes. Environmental Science & Technology, 2014,48, 7918?7923.(I 区,IF7.149)
C. Zhang*,S.V. Malhotra, A.J. Francis. Toxicity ofionic liquids to Clostridium sp. andeffects on uranium biosorption. Journal of Hazardous Materials, 2014, 264, 246-253. (I 区,IF 7.650)
MeiqingS un, Qilin Yu, Mengyuan Hu, Zhenwei Hao,Chengdong Zhang* and Mingchun Li*. Lead sulfide nanoparticlesinduce increased cell wall chitin content and induce apoptosis in yeast Saccharomyces cerevisiae. Journal of Hazardous Materials, 2014, 273, 7-16. (I 区,IF 7.650)
Meiqing Sun, Qilin Yu, Ming Liu, Xiaoyan Chen, Zhe Liu, Hao Zhou, YingjinYuan, Lu Liu*, Mingchun Li*, Chengdong Zhang*. Anovel toxicity mechanism of CdSe nanoparticles to Saccharomyces cerevisiae: Enhancement of vacuolar membrane permeabilization (VMP). Chemico-Biological Interactions, 2014, 220, 208-213. (IF 3.407)
Chengdong Zhang*, Jianchao Qi, Yiping Cao. Synergistic effect of yeast-bacterial co-culture on bioremediation of oil contaminated soil. Bioremediation Journal, 2014, 18, 136-146. (IF 1.098)
Jun Qiao, Chengdong Zhang*, Shuiming Luo, Wei Chen*. Bioremediation of highly contaminated oilfield soil: Bioaugmentation forenhancing aromatic compounds removal. Frontiers of Environmental Science & Engineering, 2014, 8(2), 293-304. (IF 3.883)
C. Zhang*, C.J. Dodge, S.V. Malhotra, A. J. Francis. Bioreduction and precipitation of uranium in ionicliquid aqueous solution by Clostridiumsp. Bioresource Technology, 2013, 136, 752-756. (I区,IF 6.669)
Chengdong Zhang*, Shuiming Luo,Wei Chen. Activity of catalase adsorbed to carbon nanotubes: Effects of carbon nanotube surface properties. Talanta, 2013, 113,142-147. (IF 4.916)
C. Zhang, S.V. Malhotra, A.J. Francis*. Toxicity of imidazolium-and pyridinium- based ionic liquids and the co-metabolic degradation of N-ethylpyridinium tetrafluoroborate. Chemosphere, 2011, 82, 1690-1695. (IF 5.108)
Zhang, C. and A.J. Francis. Interactions of ionic liquids with uranium and itsbioreduction. In The New Uranium Mining Boom, (Eds) B. Merkel and M. Schipek.Springer., Germany. 2011, pp 455-463.(英文书章节)
C. Zhang, H. Wang, S. V.Malhotra, C.J. Dodge, A. J. Francis*. Biodegradation of pyridinium based ionicliquids by an axenic culture of soil Corynebacteria.Green Chemistry, 2010, 12, 851-858. (I区,IF 9.405)
Chengdong Zhang and Sanjay V. Malhotra*. Increased paraoxon detection by acetylcholinesterase inactivation with ionic liquid additives. Talanta, 2005, 67(3), 560-563. (IF 4.916)

荣誉与奖励:
2017年经推荐作为中国女科学家代表参加美国化学协会的编辑座谈。
2016年经遴选作为外方组委会推荐的天津市三名青年科学家代表之一参加夏季达沃斯论坛(青年科学家)。
2013年《石油污染土壤革新修复技术与应用》获得天津市科学技术进步奖二等奖。
2010年6月,获中国化学会第二十七届学术年会优秀论文奖。
2006年4月,由化学和环境科学学院提名, 经新泽西理工学院研究委员会评定, 作为优秀学生研究代表参加学生研究成果展示会。
2004年8月在美国费城全美化学协会会议上做关于“通过乙酰胆碱脂酶抑制方法提高有机磷检测的研究”和“离子态液体中酶催化合成二酞的研究”的报告均被美国ACS期刊《化学和工程新闻》(Chemical & EngineeringNews)引用及报道(Nov 8, 2004; Sep 13, 2004)。
2004年至2005年于美国新泽西理工学院获金纪念奖学金。
2003年4月在美国东部地区近百所著名院校中被当选为优秀研究生代表参加Pfizer公司举办的绿色化学研讨会。




社会任职
中国环境科学学会环境化学分会第五届委员(2017年当选)。
天津市城市生态环境修复与污染防治重点实验室副主任(2016年9月~2018年4月)。
九三学社南开大学第五届委员会委员。
国家自然科学基金、省级自然科学基金、教育部留学回国人员科研启动基金、地区政府环境咨询项目评审及教育部学位评审专家。
国内环境领域核心期刊《环境化学》、《应用生态学报》等审稿人,SCI期刊 Environmental Science & Technology, Environmental Toxicology and Chemistry, Small,Carbon, Bioresource Technology, Journal of Hazardous Materials, Chemosphere, Chemcatchem, RSC advances, Chemical Engineering Journal,Journal of Environmental Science, Frontiers of Environmental Science and Engineering等审稿人。
天津污染场地修复产业技术创新战略联盟专家委员会成员(2014年9月—2017年9月)。




其他信息
主旨、邀请报告:
2018年美国化学协会年会(ACS)第255届、256届年会,分会场邀请报告。
2017年10月20-22日在第九届全国环境化学大会青年专场做邀请报告。
2016年6月1-3日受邀在Nanotech France 国际会议上做主旨报告。




研究方向
环境污染物的生物效应、毒性机制及生物修复等



联系方式
联系地址: 北京市海淀区新街口外大街19号
邮政编码: 100875
Email:zhangchengdong@bnu.edu.cn



ENGLISH
Chengdong Zhang
School of Environmental Science
Beijing Normal University
No.19, XinJieKouWai St., HaiDian District
Beijing 100875, P. R. China
Email: zhangchengdong@bnu.edu.cn
EDUCATION
Ph.D. in Environmental Science09/2002~05/2006
New Jersey Institute of Technology, USA
MS in Environmental Science, 09/1998~01/2001
Nanjing University, China
BS in Environmental Chemistry, 09/1994~07/1998
Nanjing University, China
PROFESSIONAL EXPERIENCES
May 2018 – present Professor, Beijing Normal University
Jan 2014 – Apr 2018 Professor, Nankai University
Sep2006 –Dec 2013Associate Professor, Nankai University
Apr 2011 – Sep 2011 Visiting scholar at Rice University, USA
Aug2004– May 2006 Graduate Research Assistant, New Jersey Institute of Technology
Sept2002 – July2004 Teaching Assistant, New Jersey Institute of Technology
RESEARCH INTERESTS
Her research area includes environmental microbiology, environmental bioremediation, environmental applications and implications of nanotechnology and environmental toxicology.
Honors and awards
·Committee member of Environmental Chemistry branch of Chinese society of Environmental Science (the fifth).
·Tianjin science and Technology Progress Award (second class), 2013.
·Best Assay Award of 27th annual meeting of Chinese Chemical Society, Xiamen, 06/2010.
·Two papers presented at ACS meeting had been reported and cited by Chemical & Engineering News (September 13, 2004 & November 8,2004).
·Goldstein Memorial Fellowship, New Jersey Institute of Technology, USA, 2004-2005.
·Selected to participate in Provost’s Student Research Day as one of the best student researchers in NJIT. 04/2006
·Selected from hundreds of candidates in big Columbia area as outstanding graduate student to participate in Pfizer’s green chemistry workshop. 04/2003
·Guanghua Fellowship for Outstanding Graduate Student (First Class), Nanjing University,9/2000.
·Renmin Scholarship (total 4 times), Nanjing University, 1994-1998.
Selected publications
1.Ming zhu Li, Yuning He, Jing Sun, Jing Li, Junhong Bai, and Chengdong Zhang*. Chronic exposure to an environmentally relevant triclosan concentration induces persistent triclosan resistance but reversible antibiotic tolerance in Escherichia coli. Environmental Science &Technology, 2019, 53, 3277-3286.
2.Huiru Zhao, Chengdong Zhang*, Yaqi Wang, Wei Chen, Pedro JJ Alvarez. Self-damaging aerobic reduction of graphene oxide by Escherichia coli: Role of GO-mediated extracellular superoxide formation. Environmental Science & Technology, 2018, 52(21), 12783-12791.
3.Qiurong Zhang, Xiaolei Liu, Hongyan Meng, Sijin Liu and Chengdong Zhang*, Reduction pathway-dependent cytotoxicity of reduced graphene oxide. Environmental Science: Nano, 2018, 5, 1361-371.
4.Ming Gao, Beibei Zhao, Minjun Chen, Yun Liu, Ming Xu, Zhe Wang, Sijin Liu*, Chengdong Zhang*. Nrf-2-driven long noncoding RNA ODRUL contributes to modulating silver nanoparticle-induced effects on erythroid cells. Biomaterials, 2017, 130, 14-27.
5.Chengdong Zhang*, Xiaoyan Chen. Different effects of sonication pretreatment on carbon nanomaterials under low hydrogen peroxide concentrations. Ultrsonics Sonochmistry, 2017, 34, 19-26.
6.Mingzhu Li, Chengdong Zhang*.γ-Fe2O3nanoparticle-facilitated Bisphenol A degradation by white rot fungus. Science Bulletin, 2016, 61, 468-472.
7.Chengdong Zhang*, Silong Chen, Pedro JJ Alvarez, Wei Chen. Reduced Graphene Oxide Enhances Horseradish Peroxidase Stability by Serving as Radical Scavenger and Redox Mediator, Carbon, 2015, 94, 531-538.
8. Chengdong Zhang*, Mingzhu Li, Xu Xu, Na Liu*. Effects of carbon nanotubes on atrazine biodegradation by Arthrobacter sp. Journal of Hazardous Materials, 2015, 287, 1-6.
9. Rang Pang, Mingzhu Li, Chengdong Zhang*. Degradation of phenolic compounds by laccase immobilized on carbon nanomaterials: Diffusional limitation investigation. Talanta, 2015, 131, 38-45.
10. Chengdong Zhang*, Mingzhu Li, Xiaoyan Chen, Mingchun Li*. Edible fungus degrade Bisphenol A with no harmful effect on its fatty acid composition. Ecotoxicology and Environmental Safety,2015, 118, 126-132.
11. Meiqing Sun, Qilin Yu, Ming Liu, Xiaoyan Chen, Zhe Liu, Hao Zhou, Yingjin Yuan, Lu Liu*,Mingchun Li*, Chengdong Zhang*. A novel toxicity mechanism of CdSe nanoparticles to Saccharomyces cerevisiae: Enhancement of vacuolar membrane permeabilization (VMP). Chemico-Biological Interactions, 2014, 220, 208-213.
12. C. Zhang*,S.V. Malhotra, A.J. Francis. Toxicity of ionic liquids to Clostridium sp. and effects on uranium biosorption, Journal of Hazardous Materials, 2014, 264,246-253.
13. Meiqing Sun, Qilin Yu, Mengyuan Hu, Zhenwei Hao, Chengdong Zhang*and Mingchun Li*. Lead sulfide nanoparticles induce increased cell wall chitin content and induce apoptosis in yeast Saccharomyces cerevisiae, Journal of Hazardous Materials, 2014, 273, 7-16.
14. Chengdong Zhang*, Wei Chen, Pedro J J Alvarez*. Manganese Peroxidase Degrades Pristine but Not Surface-Oxidized (Carboxylated) Single-Walled Carbon Nanotubes, Environmental Science & Technology, 2014, 48, 7918?7923.
15. Chengdong Zhang*, Jianchao Qi, Yiping Cao. Synergistic Effect of Yeast-Bacterial Co-culture on Bioremediation of Oil Contaminated Soil, Bioremediation Journal, 2014, 18,136-146.
16. Jun Qiao, Chengdong Zhang*, Shuiming Luo, Wei Chen*. Bioremediation of highly contaminated oilfield soil: Bioaugmentation for enhancing aromatic compounds removal. Frontiers of Environmental Science & Engineering, 2014, 8(2), 293-304.
17. C. Zhang*, C.J. Dodge, S. V. Malhotra, A. J. Francis. Bioreduction and precipitation of uraniumin ionic liquid aqueous solution by Clostridiumsp., Bioresource Technology, 2013, 136, 752-756.
18. Chengdong Zhang*, Shuiming Luo, Wei Chen. Activity of Catalase Adsorbed to Carbon Nanotubes: Effects of Carbon Nanotube Surface Properties, Talanta, 2013, 113,142-147.
19. C. Zhang, S.V. Malhotra, A.J. Francis*. Toxicity of imidazolium-and pyridinium- based ionic liquids and the co-metabolic degradation of N-ethylpyridinium tetrafluoroborate, Chemosphere, 2011, 82, 1690-1695.
20. C. Zhang, H. Wang, S.V. Malhotra, C.J. Dodge, A. J. Francis*. Biodegradation of pyridinium based ionic liquids by an axenic culture of soil Corynebacteria, Green Chemistry, 2010, 12, 851-858.
21. Zhang, C. and A.J. Francis. Interactions of ionic liquids with uranium and its bioreduction. In The New Uranium Mining Boom, (Eds) B. Merkel and M. Schipek. Springer., Germany. 2011, pp 455-463.
22. Tingting Du, Adeyemi S. Adeleye, Arturo A. Keller, Zhineng Wu, Wei Han, Yingying Wang, Chengdong Zhang, Yao Li*. Photochlorination-induced transformation of graphene oxide: Mechanism and environmental fate. Water Research, 2017, 124,372-380.
23. Lei Hou, John D. Fortner, Ximeng Wang, Chengdong Zhang, Lilin Wang, Wei Chen*. Complex interplay between formation route and natural organic matter modification controls capabilities of C60 nanoparticles (nC60)to accumulate organic contaminants. Journal of Environmental Science, 2017,51,315-323.
24. Taotao Lu, Tianjiao Xia, Chengdong Zhang, Wei Chen*. Effects of clay minerals on transport of graphene oxide in saturated porous media. Environmental Toxicology and Chemistry, 2017, 36(3), 655-660.
25. Lu Liu*, Meiqing Sun, Haijun Zhang, Qilin Yu, Mingchun Li, Yu Qi, Chengdong Zhang, Guandao Gao, Yingjin Yuan, Huanhuan Zhai, Wei Chen,*, and Pedro J.J. Alvarez*.Facet energy and reactivity versus cytotoxicity: The surprising behavior of CdS nanorods, Nano letters, 2016, 16, 688-694.
26. Yao Li, Nan Yang, Tingting Du, Tianjiao Xia, Chengdong Zhang, Wei Chen*.Chloramination of graphene oxide significantly affects its transport properties in saturated porous media. NanoImpact, 2016, 3-4, 90-95.
27. Xuguang Li, Weifeng Chen, Chengdong Zhang, Yao Li, Fanfan Wang, Wei Chen*. Enhanced dehydrochlorination of 1,1,2,2-tetrachloroethane by graphene-based nanomaterials. Environmental Pollution, 2016, 214, 341-348.
28. Hou, Lei; Zhu, Dongqiang; Wang,Ximeng; Wang, Lilin; Zhang, Chengdong; Chen, Wei*. Adsorption of Phenanthrene, 2-Naphthol, and 1-Naphthylamine to Colloidal Oxidized Multi-Walled Carbon Nanotubes: Effects of Humic Acid and Surfactant Modification, Environmental Toxicology and Chemistry, 2013, 32(3),493-500.
29. Wang, Lilin; Fortner, John; Hou, Lei; Zhang, Chengdong; Kan, Amy; Tomson, Mason B. ; Chen, Wei*. Contaminant-Mobilizing Capability of Fullerene Nanoparticles (nC60): Effect of Solvent-Exchange Process in nC60 Formation, Environmental Toxicology and Chemistry, 2013, 32(2), 329-336.
30. Wang Lilin, Fortner John, Hou Lei, Zhang Chengdong, Kan Amy, Tomson MasonB., Chen Wei. Contaminant-mobilizing capability of fullerene nanoparticles (nC60): Effect of solvent-exchange process in nC60 formation. Environmental Toxicology and Chemistry, 2013, 32(2), 329-336.
31. S.V. Malhotra, C. Zhang, H. Wang. Enzymatic synthesis of dipeptides in ionic liquids. Letters in Organic Chemistry, 2010,7(2), 168-171.
32. Yang W., Zhang J., Zhang C., Zhu L., Chen W. Sorption and resistant desorption of atrazine in typical Chinese soils. Journal of Environmental Quality, 2009, 38, 171-179.
33. Yang W., Duan L., Zhang N., Zhang C., Shipley H.J., Kan A.T., Tomson M.B., Chen W. Resistant desorption of hydrophobic organic contaminants in typical Chinese soils: implication for long-term fate and soil quality standards. Environmental Toxicology and Chemistry, 2008, 27(1), 235-242.
34. Duan L., Zhang N., Wang Y., Zhang C., Zhu L., Chen W. Release of hexachlorocyclohexanes from historically and freshly contaminated soils in China: Implication for fate and regulations. Environmental Pollution, 2008,156, 753-759.
35. Lu Ying, S.K. Han, and C.D. Zhang. Adsorption of mefenacet in soils. Bulletin of Environmental Contamination and Toxicology, 2001, 66, 17-23.




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