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微生物燃料电池:结构、电解质溶液和电极材料对发电的影响。

Microbial fuel cells: the effects of configurations, electrolyte solutions, and electrode materials on power generation.

机构信息

The College of Environmental Science and Engineering, Nankai University, Tianjin, China.

出版信息

Appl Biochem Biotechnol. 2010 Jan;160(1):168-81. doi: 10.1007/s12010-008-8516-5. Epub 2009 Jan 27.

Abstract

This objective of this study is to conduct a systematic investigation of the effects of configurations, electrolyte solutions, and electrode materials on the performance of microbial fuel cells (MFC). A comparison of voltage generation, power density, and acclimation period of electrogenic bacteria was performed for a variety of MFCs. In terms of MFC configuration, membrane-less two-chamber MFCs (ML-2CMFC) had lower internal resistance, shorter acclimation period, and higher voltage generation than the conventional two-chamber MFCs (2CMFC). In terms of anode solutions (as electron donors), the two-chamber MFCs fed with anaerobic treated wastewater (AF-2CMFCs) had the power density 19 times as the two-chamber MFCs fed with acetate (NO(3)(-)2CMFCs). In terms of cathode solutions (as electron acceptors), AF-2CMFCs with ferricyanide had higher voltage generation than that of ML-2CMFCs with nitrate (NO(3)(-)ML-2CMFCs). In terms of electrode materials, ML-2CMFCs with granular-activated carbon as the electrode (GAC-ML-2CMFCs) had a power density 2.5 times as ML-2CMFCs with carbon cloth as the electrode. GAC-ML-2CMFCs had the highest columbic efficiency and power output among all the MFCs tested, indicating that the high surface area of GAC facilitate the biofilm formation, accelerate the degradation of organic substrates, and improve power generation.

摘要

本研究的目的是系统研究构型、电解质溶液和电极材料对微生物燃料电池(MFC)性能的影响。对各种 MFC 的发电细菌的电压产生、功率密度和驯化期进行了比较。在 MFC 构型方面,无膜双室 MFC(ML-2CMFC)的内阻更低、驯化期更短、电压产生更高,优于传统的双室 MFC(2CMFC)。在阳极溶液(作为电子供体)方面,用厌氧处理废水(AF-2CMFCs)作为燃料的双室 MFC 的功率密度是用乙酸盐(NO(3)(-)2CMFCs)作为燃料的双室 MFC 的 19 倍。在阴极溶液(作为电子受体)方面,用铁氰化物作为阴极溶液的 AF-2CMFC 的电压产生高于用硝酸盐(NO(3)(-)ML-2CMFCs)作为阴极溶液的 ML-2CMFC。在电极材料方面,用颗粒活性炭作为电极的 ML-2CMFC(GAC-ML-2CMFCs)的功率密度是用碳纤维布作为电极的 ML-2CMFC 的 2.5 倍。GAC-ML-2CMFC 在所有测试的 MFC 中具有最高的库仑效率和功率输出,表明 GAC 的高表面积有利于生物膜的形成、加速有机基质的降解并提高发电效率。

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