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磷质量浓度对生物阴极微生物燃料电池脱氮产电的影响 被引量:2
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作者 储朋朋 程建萍 +3 位作者 胡淑恒 郭靖 谢霄云 汪家权 《灌溉排水学报》 CSCD 北大核心 2020年第S01期40-45,共6页
【目的】研究磷对生物阴极微生物燃料电池脱氮的效果。【方法】在试验过程中,向4组反应器阴极液中添加不同质量浓度的磷酸钾,研究了生物阴极型微生物燃料电池(Microbial Fuel Cell,MFC)的脱氮产电性能。【结果】阴极液中添加的硝酸盐量... 【目的】研究磷对生物阴极微生物燃料电池脱氮的效果。【方法】在试验过程中,向4组反应器阴极液中添加不同质量浓度的磷酸钾,研究了生物阴极型微生物燃料电池(Microbial Fuel Cell,MFC)的脱氮产电性能。【结果】阴极液中添加的硝酸盐量固定为100mg/L,MFC阴极液中磷氮质量浓度比越大,MFC产电性能越差,脱氮效率越低。在添加85.68 m/L磷酸钾量条件下,即磷氮质量浓度比为1∶8条件下,MFC的最高输出电压达到0.42 V,最大功率密度为832.13 mW/m3,阴极硝酸盐去除率最大为87.86%。整个降解过程中总磷几乎没有变化,磷酸根质量浓度先减小后增大,磷酸根可能转化成其他形式的磷。【结论】不同磷氮质量浓度比对MFC生物阴极脱氮产电有一定的影响。 展开更多
关键词 生物阴极 mfc产电 硝酸盐 脱氮 磷酸钾质量浓度
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Identification of the Electricity-Producing Bacteria in Wastewater for Microbial Fuel Cells (MFCs)
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作者 S.M. Zain S. Roslani +4 位作者 N. Anuar R. Hashim F. Suja S.K. Kamarudin N.E.A. Basri 《Journal of Environmental Science and Engineering》 2010年第10期51-56,共6页
A microbial fuel cell (MFC) is a device that converts chemical energy to electrical energy during substrate oxidation by microorganisms. The characterization and identification of these microbial communities will al... A microbial fuel cell (MFC) is a device that converts chemical energy to electrical energy during substrate oxidation by microorganisms. The characterization and identification of these microbial communities will allow better control of this electricity generation with simultaneous removal of carbon and nitrogen. This study aims to investigate the role of natural bacteria in electricity generation by studying three different sources of wastewater: the raw wastewater (RW), wastewater from an aeration tank (AEW) and returned activated sludge (RAS) from an activated sludge treatment plant. The result showed that after the MFC treatment, the number of bacterial strains was reduced from twenty strains to eight strains. Microscopic observation further showed that fifteen isolate before the treatment were gram-positive, and five were gram-negative whereas all isolates after the treatment were gram-positive rods or cocci The four strains isolated from the RAS inoculums, β-Comamonas sp., γ-Enterobacter sp., Bacillus cereus sp. and Clostridium sp. produced the highest power density of 67.57 mW/m^2 which made them potential candidates for electrochemically active bacteria in MFCs. However, the level of chemical oxygen demand (COD) removal was 20% and the total kjeldahl nitrogen (TKN) removal was 66.7%. Key words: 展开更多
关键词 producing bacteria microbial fuel cell mfc WASTEWATER polymerase chain reaction (PCR)
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