主要论文
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11. Zhang Y*, Xu Y, Chen X, Chen C, Sun J, Bai X, et al. Effect of copper ions on glucose fermentation pathways in bioelectrochemical system. Chemosphere. 2021;272:129627. 10. Shaofeng Zhou, Lihua Zhou, Yaping Zhang*, Jian Sun, Junlin Wen, Yong Yuan*, Upgrading earth-abundant biomass into three-dimensional carbon materials for energy and environmental applications, Journal of Materials Chemistry A, 2019,7: 4217-4229. 9.Yaping Zhang, Guanqun Li, Jing Wen, Yangao Xu, Jian Sun, Xun-an Ning, et al. Electrochemical and microbial community responses of electrochemically active biofilms to copper ions in bioelectrochemical systems, Chemosphere, 2018, 196: 377-385. 8.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.
7.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.
6.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.
5.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.
4.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.
3.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.
2.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.
1.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.
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