德智馨远 草木荣华
张亚平,讲师、博士,广东工业大学“青年百人”引进人才。主要研究方向为:利用生物电化学系统处理废水、废物同时产电及其在生态修复中的应用。(热忱欢迎对上述研究内容感兴趣,具有环境、微生物或电化学等研究背景的同学加入。邮箱:zhangyaping911@foxmail.com)
(1)受教育经历
2008/09—2014/06,华南理工大学,环境与能源学院,研究生/博士;
2012/09-2014/03,康奈尔大学,生物与环境工程系,联合培养博士;
2004/09-2008/06,湖北大学,资源环境学院,本科/学士。
(2)主要论著
[1]Zhang Y, Sun J, Hu Y, et al. Effects of periodically alternating temperatures on performance of single-chamber microbial fuel cells. International Journal of Hydrogen Energy. 2014; 39, 8048-54.
[2]Zhang Y, Sun J, Hu Y, Li S, Xu Q. Carbon nanotube-coated stainless steel mesh for enhanced oxygen reduction in biocathode microbial fuel cells.J of Power Sources. 2013; 239:169-74.
[3]Zhang, Y, Sun, J., Hu, Y., Li, S., Xu, Q. Bio-cathode materials evaluation in microbial fuel cells: A comparison of graphite felt, carbon paper and stainless steel mesh materials.International Journal of Hydrogen Energy, 2012; 37(22), 16935-42.
[4]Zhang Y, Hu Y, Li S, Sun J, Hou B. Manganese dioxide-coated carbon nanotubes as an improved cathodic catalyst for oxygen reduction in a microbial fuel cell.J Power Sources. 2011; 196: 9284-9.
[5]Zhang Y, Sun J, Hou B, Hu Y. Performance improvement of air-cathode single-chamber microbial fuel cell using a mesoporous carbon modified anode.J Power Sources. 2011; 196: 7458-64.
[6]Sun J, Li W, Li Y, Hu Y,Zhang Y. Redox mediator enhanced simultaneous decolorization of azo dye and bioelectricity generation in air-cathode microbial fuel cell.Bioresour Technol. 2013; 142: 407-14.
[7]Li S, Hu Y, Xu Q, Sun J, Hou B,Zhang Y.Iron- and nitrogen-functionalized graphene as a non-precious metal catalyst for enhanced oxygen reduction in an air-cathode microbial fuel cell.J Power Sources. 2012; 213:265-9.
[8]Sun J, Li Y, Hu Y, Hou B,Zhang Y, Li S. Understanding the degradation of Congo red and bacterial diversity in an air–cathode microbial fuel cell being evaluated for simultaneous azo dye removal from wastewater and bioelectricity generation.Appl Microbiol Biotechnol. 2013; 97:3711-9.
(3)主持和参与科研项目
1、广东工业大学“青年百人”项目(人才计划项目),1143-220413514,生物电化学系统中电子传递的强化及其在污染物降解中的应用,2014.12-2016.12,10万元,在研、主持。
2、国家自然科学基金青年基金项目,51108186、基于暗/光反应反转电极极性的藻菌共生双生物电极微生物燃料电池单电极交替降解偶氮染料与同步产电研究,2012.1-2014.12,25万元,已结题,参与。
联系方式:广东工业大学环境科学与工程学院,工学3号馆518室,邮编:510006
E-mail:zhangyaping911@foxmail.com
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