
职 务:教授
Professional and Technical Post:Professor
博士/硕士导师:博士生、硕士生导师
Supervisor (PhD or Master):PhD and Master
办公室电话:021-65981263
Telephone (O):021-65981263
电子邮箱:yinguangchen@tongji.edu.cn
E-mail:yinguangchen@tongji.edu.cn
所在系所(部门):环境工程
Department:Environmental Engineering
主要研究方向:
Research field:
水/废物生物处理与资源化及能源化、污染物环境行为与生物再利用
Bio-treatment of wastewater/waste and resource reuse and energy recovery, Environmental behavior of pollutants and their bio-reutilization
校内外学术及行政兼职
Academic and administration position
Water Research期刊Associate editor
Associate editor of Water Research
教育经历
Education Background
1996.2--1998.12 无锡轻工大学(今江南大学)生物工程系 博士生
Ph.D., Dept. of Biotechnology, Wuxi University of Light Industry
1993.9--1995.12 无锡轻工大学(今江南大学)化学工程系 硕士生
M.S, Dept. of Chemical Engineering, Wuxi University of Light Industry
1989.9--1993.7 江苏化工学院(今常州大学)应用化学系 本科生
B.S., Dept. of Applied Chemistry, Jiangsu Institute of Petrochemical Technology
工作经历
Working Experience
2003.12--现在 同济大学环境科学与工程学院环境工程系 教授
Professor, School of Environmental Science and Engineering, Tongji University
2002.4--2003.7 美国弗吉尼亚理大学生物系统工程系 博士后研究员
Postdoc, Dept. of Biological System Engineering, Virginia Polytechnic Institute and State University, USA
2001.4--2002.4 美国中佛罗里达大学土木与环境工程系 博士后研究员
Postdoc, Dept of Civil and Environmental Engineering, University of Central Florida, USA
1999.4--2001.1 同济大学环境科学与工程学院环境工程系 博士后研究员
Postdoc, School of Environmental Science and Engineering, Tongji University
主讲课程
Teaching
环境微生物/生物化学/实验设计与数据处理
Environmental Microbiology; experiment design and data analysis; biochemistry
科研项目
Scientific Research Projects
国家杰出青年科学基金、国家863、国家水污染控制与治理重大专项、教育部新世纪优秀人才支持计划、霍英东基金、上海市学术带头人、上海市曙光计划等项目或课题
National Science Foundation projects, National Hi-Tech Research and Development Program (863) projects, The key projects of National Water Pollution Control and Management of China, etc.
近三年以通讯作者发表的代表学术论文
Representative publications in the recent three years
以通讯或第一作者在环境和水处理类主流期刊Environmental Science & Technology及Water Research发表论文40余篇;h指数42。以通讯或第一作者发表的15篇代表性论文如下:
[1]Hui Liu, Yinguang Chen. Enhanced methane production from food waste using cysteine to increase biotransformation of L-monosaccharide, volatile fatty acids, and biohydrogen.Environmental Science & Technology, 2018, 52: 3777-3785.
[2] Yinguang Chen, Hui Liu, Xiong Zheng, Xin Wang, Jiang Wu. New method for enhancement of bioenergy production from municipal organic wastes via regulation of anaerobic fermentation process.Applied Energy, 2017, 196: 190-198.
[3] Dongbo Wang, Yinguang Chen. Critical review of the influences of nanoparticles on biological wastewater treatment and sludge digestion.Critical Reviews in Biotechnology, 2016, 36(5):816-828.
[4] Kun Liu, Yinguang Chen, Naidong Xiao, Xiong Zheng, Mu Li. Effect of humic acids with different characteristics on fermentative short-chain fatty acids production from waste activated sludge.Environmental Science& Technology, 2015, 49: 4929-4936.
[5] Xiong Zheng, Yinglong Su, Yinguang Chen, Rui Wan, Kun Liu, Mu Li, Daqiang Yin. Zinc oxide nanoparticles cause inhibition of microbial denitrification by affecting transcriptional regulation and enzyme activity.Environmental Science& Technology, 2014, 48:13800-13807.
[6] Dongbo Wang, Yinguang Chen, Xiong Zheng, Xiang Li, Leiyu Feng. Short-chain fatty acid production from different biological phosphorus removal sludges: the influences of PHA and gram-staining bacteria.Environmental Science& Technology, 2013 47: 2688-2695.
[7] Yinguang Chen, Dongbo Wang, Xiaoyu Zhu, Xiong Zheng, Leiyu Feng. Long-term effects of copper nanoparticles on wastewater biological nutrient removal and N2O generation in activated sludge process.Environmental Science& Technology, 2012, 46: 12452-12458.
[8] Leiyu Feng, Yuanyuan Yan, Yinguang Chen, Lijun Wang. Nitrogen-doped carbon nanotubes as efficient and durable metal-free cathodic catalyst for oxygen reduction in microbial fuel cells.Energy & Environmental Science, 2011, 4(5): 1892-1899.
[9] Dong Zhang, Yinguang Chen, Yuxiao Zhao, Xiaoyu Zhu. New sludge pretreatment method to improve methane production in waste activated sludge digestion.Environmental Science& Technology, 2010, 44: 4802-4808.
[10] Yamin Jiang, Yinguang Chen, Xiong Zheng. Efficient polyhydroxyalkanoates production from a waste-activated sludge alkaline fermentation liquid by activated sludge submitted to the aerobic feeding and discharge process.Environmental Science& Technology,2009,43: 7734-7741.
[11] Chao Zhang, Yinguang Chen, Andrew A. Randall, Guowei Gu. Anaerobic metabolic models for phosphorus- and glycogen-accumulating organisms with mixed acetic and propionic acids as carbon sources.Water Research, 2008, 42: 3745-3756.
[12] Juan Tong, Yinguang Chen. Enhanced biological phosphorus removal driven by short-chain fatty acids produced from waste activated sludge alkaline fermentation.Environmental Science& Technology, 2007, 41: 7126-7130.
[13] Hongying Yuan, Yinguang Chen, Huaxing Zhang, Su Jiang, Qi Zhou, Guowei Gu. Improved bioproduction of short-chain fatty acids (SCFAs) from excess sludge under alkaline conditions.Environmental Science& Technology, 2006, 40: 2025-2029.
[14] Yinguang Chen, Andrew A. Randall, Terrence McCue. The efficiency of enhanced biological phosphorus removal from real wastewater affected by different ratios of acetic to propionic acid.Water Research, 2004, 38: 27-36.
[15] Yinguang Chen, Haizhen Yang and Guowei Gu. Effect of acid and surfactant treatment on activated sludge dewatering.Water Research, 2001, 35: 2615-2620.
专利及获奖
Awards and patents
[1]陈银广,张 超,胡兰芳,等.一种污水厂原位强化发酵再生碳源污水处理系统. ZL 200910049821.3.
[2]陈银广,朱晓宇.一种减少同时脱氮除磷工艺中N2O产生的方法. ZL 201110025899.9.
[3]陈银广,冯雷雨,严媛媛.一种提高以污泥为燃料的微生物燃料电池产电效果的方法. ZL 201110021962.1.
[4]陈银广,李暮,孟凡松,罗景阳,陈红.一种合成高羟基戊酸含量聚羟基烷酸酯的方法. ZL 201310184868.7.
[5]陈银广 王怀臣 赵姝 孟凡松.一种利用缓释固体碳源进行生物脱氮的方法. ZL 201210257913.2.
[6]陈银广 郑雄 魏媛媛 苏应龙.用于削减纳米材料对污水生物除磷脱氮系统不利影响的方法. ZL 201310393153.2.
[7]陈银广,孙寒,冯雷雨,曹越,罗景阳.石墨相氮化碳/聚甲基丙烯酸甲酯复合材料及其制备方法. ZL 201410838030.X.
[8]陈银广 李响 郑雄 苏应龙 赵姝 刘鹏.一种有机废物与污泥混合发酵生产高纯度L-乳酸的方法. ZL 201410109858.1.
[9]陈银广,郑雄,黄海宁,苏应龙,李暮,吴丽娟.用于削减污泥厌氧处理过程中抗性基因释放的方法. ZL 201510053338.8.
[10]陈银广,李暮,刘坤,苏应龙,郑雄,万锐.基于降低除磷微生物厌氧释磷同时提高吸磷/释磷比及生物除磷效果的方法. ZL 201510066994.1