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Sustainable Power Production in a Membrane-less and Mediator-less Wastewater Microbial Fuel Cell

机译:无膜和无介质废水微生物燃料电池的可持续发电

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摘要

Microbial fuel cells (MFCs) fed with wastewater are currently considered a feasible strategy for production of renewable electricity at low cost.udA membrane-less MFC with biological cathode was built from a compact wastewater treatment reactor. When operated with an external resistance of 250 Ohm, the MFC produced a long-term power of approximately 70 mW/m2 for ten months. Denaturing Gradient Gel Electrophoresis (DGGE) analysis of the cathode biomass when the MFC was closed on a 2100 Ohm external resistance showed that the sequenced bands were affiliated with Firmicutes, -Proteobacteria, -Proteobacteria, -Proteobacteria, and Bacteroidetes groups.udWhen the external resistance was varied between 250 and 2100 Ohm, sustainable resistance decreased from 900 to 750 Ohm, while sustainable power output decreased from 32 to 28 mW/m2. It is likely that these effects were caused by changes in the microbial ecology of anodic and cathodic biomass attached to the electrodes. Results suggest that cathodic biomass enrichment in “electroactive” bacteria may improve MFCs power output in a similar fashion to what has been already observed for anodic biomass.ud
机译:目前,以废水为燃料的微生物燃料电池(MFCs)被认为是低成本生产可再生电力的可行策略。 ud采用紧凑型废水处理反应器构建了带有生物阴极的无膜MFC。当使用250欧姆的外部电阻工作时,MFC在10个月内产生约70 mW / m2的长期功率。当MFC在2100 Ohm的外部电阻上关闭时,对阴极生物质的变性梯度凝胶电泳(DGGE)分析表明,测序的条带与Firmicutes,-Proteobacteria,-Proteobacteria,-Proteobacteria和拟杆菌属相关。 ud当外部电阻在250至2100欧姆之间变化时,可持续电阻从900欧姆降低至750欧姆,而可持续功率输出从32毫瓦/平方米降低。这些影响很可能是由附着在电极上的阳极和阴极生物质的微生物生态学变化引起的。结果表明,“电活性”细菌中阴极生物质的富集可以提高MFCs的功率输出,其方式与已经观察到的阳极生物质类似。

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