>> Organic Solid Waste Recycling and Energy Utilization     Menber
 
   
Zheng Tao
Professor  Doctor

zhengtao@ms.giec.ac.cn

 
 

Major studying and working experiences:

2015-present  Researcher, Guangzhou Institute of Energy Conversion,Chinese Academy of Science

2010-2015  Professor, College of Biological and Pharmaceutical Engineering, Nanjing Tech University

2008-2010  Research associate,Physics, Cavendish laboratory, University of Cambridge

2004-2009 Master and PhD,Materials Modelling, Cavendish laboratory, University of Cambridge

2000-2004   Nanjing Tech University     Polymeric materials and engineering    Bachelor of Engineering

Major achievements

       郑涛,1982年生,中国致公党员,现任中国科学院广州能源研究所研究员。郑涛教授毕业于英国剑桥大学物理系卡文迪许实验室,是Biological and Soft System研究小组历史上第一个中国学生,在英国求学期间发表了多篇重要学术论文,专利及国际学术会议报告。在英国期间师从英国著名生物物理科学家,英国皇家科学院院士,Professor Athene Donald,参与多项英国基金(如EPSRC,BBSRC)。2011年回国任职于南京工业大学生物与制药工程学院(教授),2012年成立南京工业大学生物能源研究所并担任所长,2015年8月任职中科院广州能源研究所。

       郑涛教授一直致力于生物化学、生物电化学、材料学等交叉学科的研究工作,在应用方面,主要方向是生物质能源化利用、生物电化学合成、天然产物绿色提取技术等领域。战略任务是以生物质资源为原料,通过生化反应、电化学合成等手段开发出绿色环保的生物质资源全组分利用战略路线及工艺方案。主持和参与了包括国家“863”课题、国家“973”课题、中国工程院重大咨询研究项目在内的20余项国家和省市级项目。发表科技文章类文章81篇,其中英文41篇,中文40篇,申请专利52项,其中授权专利14项。

Research direction:

       生物转化、微生物电化学转化、材料与微生物表面界面的研究

Research works:

1. 2012年国家高技术研究发展计划(863计划)担任子课题负责人;

2. 2013年国家重点基础研究发展计划(973计划)担任课题负责人;

3. 2013年江苏省农业科技自主创新基金项目担任项目负责人;

4. 2013年国家自然科学基金青年基金项目担任项目负责人;

5. 2016年广东省科学计划项目(两个项目)担任项目负责人;

6. 2017年广东省科技计划项目担任项目负责人;

7. 2017年中国科学院广州能源研究所湖州循环经济产业创新专项项目担任项目负责人;

8. 2020年中国科学院绿色过程制造创新研究院自主部署联合基金项目担任项目负责人。

Major papers:

1. Zhou Zhengzhong; Li Dan; Wu Qigang; Zheng Tao*; Yuan Haoran; Peng Na.The investigation of the reversed enantio-selectivity by an alpha-cyclodextrin doped thin film composite membrane[J]. Chemical Engineering Research and Desigh, 160(2020)437-446.

2. Chen Lin, Zheng Tao*, Cao Qin, Zhou Yimin, Liu Xiaofeng, Lidong.Early warning of instability during mesophilic anaerobic digestion of chicken manure[J].APPLIED ECOLOGY AND ENVIRONMENTAL RESEARCH, 18(2019)331-343.

3. Shuya Wang;Ziwei Yang;Na Peng;Jun Zhou;Xiaoyu Yong;Haoran Yuan;Tao Zheng*.Optimization of ionic liquids-based microwave-assisted hydrolysis of puerarin and daidzein derivatives from Radix Puerariae Lobatae extract[J].Food Chemistry ,256 (2018) 149–155

4. Xiao-Yu Yong; Dong-Yan Gu; Yuan-Dong Wu; Zhi-Ying Yan; Jun Zhou; Xia-Yuan Wu; Ping Wei; Hong-Hua Jia; Tao Zheng*; Yang-Chun Yong.Bio-Electron-Fenton (BEF) process driven by microbial fuel cells for triphenyltin chloride (TPTC) degradation[J]. Journal of Hazardous Materials ,324 (2017) 178-183

5. Tao Zheng*; Yu-Shang Xu; Xiao-Yu Yong; Bing Li; Di Yin; Qian-Wen Cheng; Hao-Ran Yuan; Yang-Chun Yong.Endogenously enhanced biosurfactant production promotes electricity generation from microbial fuel cells[J]. Bioresource Technology, 197(2015)416-421

6. Xi Liu; Jun Zhou; Yabing Zhang; Xiaoning Liu; Yilu Chen; Xiaoyu Yong; Shuya Wang; Tao Zheng*; Haoran Yuan.

Continuous process of biogas purification and co-production of nano calcium carbonate in multistag[J]. Chemical Engineering Journal, 271 (2015) 223-231

7. Xiao-Yu Yong; Jiao Feng; Yi-Lu Chen; Dong-Yan Shi; Yu-Shang Xu; Jun Zhou; Shu-Ya Wang; Lin Xu; Yang-Chun Yong; Yong-Ming Sun; Chen-Lu Shi; Ping-Kai OuYang; Tao Zheng*.Enhancement of bioelectricity generation by cofactor manipulation in microbial fuel cell[J]. Biosensors and Bioelectronics, 56 (2014) 19–25

8. Xiao-Yu Yong; Dong-Yan Shi; Yi-Lu Chen; Feng Jiao; Xu Lin; Jun Zhou; Shu-Ya Wang; Yang-Chun Yong; Yong-Ming Sun; Ping-Kai OuYang; Tao Zheng*.Enhancement of bioelectricity generation by manipulation of the electron shuttles synthesis pathway in microbial fuel cells[J]. Bioresource Technology,52 (2014) 220–224

9. Wei Wang;Chao Su;Tao Zheng*;Mingming Liao;Zongping Shao.Nickel zirconia cerate cermet for catalytic partial oxidation of ethanol in a solid oxide fuel cell system[J].international journal of hydrogen energy ,37 (2012) 8603 e8612

10. Chao Su; Wei Wang; Ran Ran; Tao Zheng*; Zongping Shao.Further performance enhancement of a DME-fueled solid oxide fuel cell by applying anode functional catalyst[J].international journal of hydrogen energy, 37 (2012) 6844 e6852

 

 

 

 

 

 

 

 

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