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阴极菌群对MFC脱氮产电及动力学影响 被引量:5

Influence of cathode flora on denitrification,electricity production and kinetics of microbial fuel cells
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摘要 以硝酸盐溶液为阴极电子受体,在阴极室分别接种活性污泥菌群和反硝化菌群,分别构建了生物阴极型微生物燃料电池A-MFC和D-MFC。考察两种阴极菌群MFC的脱氮与产电性能,通过动力学模型对硝酸盐降解过程进行分析。结果表明,阴极菌群的不同会对MFC脱氮与产电性能造成影响,反硝化菌群对硝酸盐有更好的亲和能力和更大的耐受程度。 Using nitrate solution as cathode electron acceptor,activated sludge flora and denitrifying flora have been inoculated in the cathode chamber,respectively,and two kinds of biocathode microbial fuel cells named A-MFC and D-MFC established,respectively.The denitrification and electricity production of the two kinds of cathode flora MFCs have been investigated,and the degradation process of nitrate has been analyzed by kinetics model.The results show that the difference of cathode flora has influence on the performances of MFC denitrification and electricity produc-tion,and denitrifying flora have better affinity ability and greater tolerance degree for nitrate.
作者 祁晨 郭婧 李蓓蓓 储朋朋 汪家权 程建萍 Qi Chen;Guo Jing;Li Beibei;Chu Pengpeng;Wang Jiaquan;Cheng Jianping(School of Resources and Environmental Engineering,Hefei University of Technology,Hefei 230009,China;School of Mechanical Engineering,Hefei University of Technology,Hefei 230009,China)
出处 《工业水处理》 CAS CSCD 北大核心 2018年第11期27-30,共4页 Industrial Water Treatment
基金 国家自然科学基金资助项目(41372246 51541807) 安徽省自然科学基金(1808085 m D102)
关键词 微生物燃料电池 硝酸盐 活性污泥菌群 反硝化菌群 microbial fuel cell nitrate activated sludge flora denitrifying flora
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  • 1曹效鑫,梁鹏,黄霞.“三合一”微生物燃料电池的产电特性研究[J].环境科学学报,2006,26(8):1252-1257. 被引量:66
  • 2尤世界,赵庆良,姜珺秋.废水同步生物处理与生物燃料电池发电研究[J].环境科学,2006,27(9):1786-1790. 被引量:53
  • 3黄霞,梁鹏,曹效鑫,范明志.无介体微生物燃料电池的研究进展[J].中国给水排水,2007,23(4):1-6. 被引量:46
  • 4Wang X, Feng Y J, Lee H. Electricity production from beer brewery wastewater using single chamber microbial fuel cell[J]. Water Sci Technol,2008,57(7) :1117 - 1121.
  • 5Kargi F, Eker S. Electricity generation with simultaneous wastewater treatment by a microbial fuel cell (MFC) with Cu and Cu-Au electrodes [ J ]. J Chem Technol Biotechnol, 2007,82 ( 7 ) : 658 - 662.
  • 6Logan B E. Simultaneous wastewater treatment and biological electricity generation [ J ]. Water Sci Technot, 2005,52(1 -2) :31 -37.
  • 7Min B, Logan B E. Continuous electricity generation from domestic wastewater and organic substrates in a flat plate microbial fuel cell[ J]. Environ Sci Technol,2004, 38(21 ) :5809 -5814.
  • 8Liu H,Ramnarayanan R,Logan B E. Production of electricity during wastewater treatment using a single cham- ber microbial fuel cell [ J ]. Environ Sci Technol, 2004, 38 (7) :2281 - 2285.
  • 9Zhang L,De Schryver P,De Gusseme B,et al. Chemical and biological technologies for hydrogen sulfide emission control in sewer systems: A review [ J]. Water Res, 2008,42(1 -2) :1 - 12.
  • 10Rozendal R A,Jeremiasse A W,Hamelers H V M,et al. Hydrogen production with a microbial biocathode [ J ]. Environ Sci Technol,2008,42 (2) :629 - 634.

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