A novel and high performance activated carbon air-cathode with decreased volume density and catalyst layer invasion for microbial fuel cells
出版年份 2014 全文链接
标题
A novel and high performance activated carbon air-cathode with decreased volume density and catalyst layer invasion for microbial fuel cells
作者
关键词
-
出版物
RSC Advances
Volume 4, Issue 80, Pages 42577-42580
出版商
Royal Society of Chemistry (RSC)
发表日期
2014-08-26
DOI
10.1039/c4ra07078j
参考文献
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- Accelerated OH– Transport in Activated Carbon Air Cathode by Modification of Quaternary Ammonium for Microbial Fuel Cells
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- A comprehensive review of microbial electrochemical systems as a platform technology
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- Enhanced performance of activated carbon–polytetrafluoroethylene air-cathode by avoidance of sintering on catalyst layer in microbial fuel cells
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- Scaling up a novel denitrifying microbial fuel cell with an oxic-anoxic two stage biocathode
- (2013) Peng Liang et al. Frontiers of Environmental Science & Engineering
- Concentration responses of toxicity sensor with Shewanella oneidensis MR-1 growing in bioelectrochemical systems
- (2012) Xin Wang et al. BIOSENSORS & BIOELECTRONICS
- Catalysis Kinetics and Porous Analysis of Rolling Activated Carbon-PTFE Air-Cathode in Microbial Fuel Cells
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- (2012) Heng Dong et al. WATER RESEARCH
- Carbon nanotube modified air-cathodes for electricity production in microbial fuel cells
- (2011) Heming Wang et al. JOURNAL OF POWER SOURCES
- Mesh optimization for microbial fuel cell cathodes constructed around stainless steel mesh current collectors
- (2010) Fang Zhang et al. JOURNAL OF POWER SOURCES
- Power generation using an activated carbon and metal mesh cathode in a microbial fuel cell
- (2009) Fang Zhang et al. ELECTROCHEMISTRY COMMUNICATIONS
- Bioaugmentation for Electricity Generation from Corn Stover Biomass Using Microbial Fuel Cells
- (2009) Xin Wang et al. ENVIRONMENTAL SCIENCE & TECHNOLOGY
- Use of Carbon Mesh Anodes and the Effect of Different Pretreatment Methods on Power Production in Microbial Fuel Cells
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- Analysis and Improvement of a Scaled-Up and Stacked Microbial Fuel Cell
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