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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of the Pt loading side and cathode-biofilm on the performance of a membrane-less and single-chamber microbial fuel cell
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Effects of the Pt loading side and cathode-biofilm on the performance of a membrane-less and single-chamber microbial fuel cell

机译:Pt负载侧和阴极生物膜对无膜单室微生物燃料电池性能的影响

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摘要

In order to analyze the effect of cathode’s Pt loading side on the performance of single-chamber microbial fuel cells (MFCs), power generation of a bamboo charcoal membrane-less air-cathode MFC was examined. The maximum power outputs obtained were 0.144 and 1.16 mW, while the maximum voltage outputs were 0.400 and 0.500 V (external resistance was 500 X), respectively, when the Pt loading side facing to the air and to the anode chamber solution; after a long time of operation with the side of cathode loaded Pt facing to anode chamber solution, a biofilm was developed on the inner side of cathode. With the formation of this biofilm, the power outputs of MFC increased first, and then decreased to 0.8 mW; oxidation–reduction potentials (ORP) dropped first, and then achieved the level of stability. Coulombic efficiency (CE) increased at a certain extent. In addition, the impact of cathode-biofilm on the loss of water in anode chamber solution was determined.
机译:为了分析阴极的Pt负载侧对单腔微生物燃料电池(MFCs)性能的影响,研究了一种无竹炭膜空气阴极MFC的发电。当Pt加载侧面向空气和面对阳极室溶液时,获得的最大功率输出分别为0.144和1.16 mW,而最大电压输出分别为0.400和0.500 V(外部电阻为500 X)。经过长时间的操作(负载的Pt的一面朝向阳极室溶液),在阴极的内侧形成了生物膜。随着这种生物膜的形成,MFC的功率输出首先增加,然后降低至0.8 mW;氧化还原电位(ORP)先下降,然后达到稳定水平。库仑效率(CE)有所提高。另外,确定了阴极生物膜对阳极室溶液中水损失的影响。

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