期刊文献+

用于污水处理的微生物燃料电池研究最新进展 被引量:11

RECENT PROGRESS OF MICROBIAL FUEL CELLS FOR WASTEWATER TREATMENT
下载PDF
导出
摘要 微生物燃料电池技术目前取得了突破性的进展,并迅速成为废水处理的热点。本文介绍了微生物燃料电池的工作原理和特点,结合微生物燃料电池的发展,对其结构、运行条件,产电微生物及提高电池产电性能作了综述,探讨了提高微生物燃料电池性能的关键问题,并展望其应用前景。 Microbial fuel cell technology has been becoming an attractive field with breakthrough results. The principle and characteristics of microbial fuel cell were briefly introduced with the overall review on the research progress in structure of the reactor, running conditions and electro-microorganism. Furthermore, the key issues of affecting the performance of microbial fuel cell and its development prospect were presented.
出处 《水处理技术》 CAS CSCD 北大核心 2010年第3期10-16,共7页 Technology of Water Treatment
基金 四川省科技厅基础研究项目(2008JY0042)
关键词 微生物燃料电池 污水处理 功率密度 库仑效率 产电细菌 microbial fuel cell (MFC) wastewater treatment power density columbic efficiency electro-microorganism
  • 相关文献

参考文献40

  • 1Habermann W, Pommer E H. Biological fuel cells with sulphide storage capacity [J]. APPI Environ Microbiol, 1991,35:128-133.
  • 2刘道广,陈银广.同步污水处理/发电技术-微生物燃料电池的研究进展[J].水处理技术,2007,33(4):1-5. 被引量:19
  • 3Chaudhuri S K, Lovley D R. Electricity generation by direct oxidation of glucose in mediatorless microbial fuel cells [J].Nat Biotechnol.,2003,21 : 1229-1232.
  • 4Rabaey K, Ossieur W, Verhaege M, et al. Continuous microbial fule cells convert carbohydrates to electricity [J] . Water Science & Technology, 2005, 52:515-523.
  • 5Mekinlay J B, Zeikus J G. Extracellular iron reduction is mediated in part by neutral red and hydrogenase in Eseherichia coli [J]. APPI Environ Microbiol.,2004,70:4367- 4374.
  • 6Cheng S, Liu H, Logan B E. Increased performance of single-chamber microbial fuel cells using an improved cathode structure[J]. Electrochemistry Communications ,2006,8 (3) :489- 494.
  • 7Rosenbaum M, Zhao F, Quaas M, et al. Evaluation of catalytic properties of tungsten carbide for the anode of microbial fuel cells [J].Applied Catalysis B: Environmental,2007,74(3):261- 269.
  • 8Shin S H, Choi Y, Na S H, et al. Development of bipolar plate stack type microbial fuel cells [J]. Bull Korean Chem Soc.,2006, 27 (2) : 281-285.
  • 9Rabaey K, Boon N, Siciliano S D, et al. Biofuel cells select for microbial consortia that self-mediate electron transfer [J]. Appl Environ Microbiol.,2004,70 (9) :5373-5382.
  • 10Liu H, Grot S, Logan B E. Electrochemically assisted microbial production of hydrogen from acetate [J].Environ Sci Technol., 2005,39 (11):4317- 4320.

二级参考文献145

  • 1康峰,伍艳辉,李佟茗.生物燃料电池研究进展[J].电源技术,2004,28(11):723-727. 被引量:33
  • 2王欢,叶小鹤,陈黎明,陆嘉星,何鸣元.离子液体中间硝基苯酚在玻碳电极上的电化学还原行为研究[J].高等学校化学学报,2005,26(2):326-329. 被引量:42
  • 3詹亚力,张佩佩,闫光绪,王嘉麟,郭绍辉.微生物燃料电池及其应用研究进展[J].现代化工,2007,27(1):13-17. 被引量:20
  • 4Kim B H, Kim H J, Hyun M S, et al. Direct electrode reaction of Fe ( Ⅲ )-reducing bacterium, Shewanella putrefaciens [ J ]. J Microbiol. Biotechnol, 1999,9(2) : 127 - 131.
  • 5Jang J K,Pham T H, Chang I S, et al. Construction and operation of a novel mediator- and membrane-less microbial fuel cell [ J]. Process Biochemistry, 2004,39 : 1007 - 1012.
  • 6Liu H, Logan B E. Electricity generation using an air-cathode single chamber microbial fuel cell in the presence and absence of a proton exchange membrane [ J ] Environ Sci Technol, 2004,38 ( 14 ) : 4040 - 4046.
  • 7国家环保护局.水和废水监测分析方法[M].北京:中国环境科学出版社,2002.
  • 8Ghangrekar M M, Asolekar S R, Joshi S G. Characteristics of sludge developed under different loading conditions during UASB reactor start-up and granulation[ J]. Water Research, 2005,39:1123 - 1133.
  • 9Kim H J, Park H S, Hyun M S, et al. A mediatorless microbial fuel cell using a metal reducing bacterium[J]. Enzyme and Microbial Technology, 2002(30) : 145 - 152.
  • 10[5]Tayhas G, Palmore R, Whitesides M. Microbial and enzymatic biofuel cells. In:Eds Himmel M E, Baker J O, Overend R P.Enzymatic conversion of biomass for fuels production. Washington D C: American Chemical Society, 1994:271-290

共引文献156

同被引文献189

引证文献11

二级引证文献39

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部