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半电池配置中微生物燃料电池的阳极和阴极材料特性分析。

Anode and cathode materials characterization for a microbial fuel cell in half cell configuration.

机构信息

Separation & Conversion Technologies, VITO - Flemish Institute for Technological Research, Boeretang 200, 2400 Mol, Belgium.

出版信息

Water Sci Technol. 2011;63(10):2457-61. doi: 10.2166/wst.2011.217.

Abstract

Microbial fuel cells (MFCs) are novel bioelectrochemical devices for spontaneous conversion of biomass into electricity through the metabolic activity of the bacteria. Microbial production of electricity may become an important source of bioenergy in future because MFCs offer the possibility of extracting electric current from a wide range of soluble or dissolved complex organic wastes and renewable biomass. However, the materials used in these devices are still not economic and researchers use different materials as cathode and anode in MFCs. This results in variable performance which is difficult to compare. We tested several commercially available materials for their suitability as anode in an acetate fed MFC. Besides, a novel non-platinized activated carbon (AC) based, gas porous air cathode was also tested. Both the anode and cathode were tested in a half cell configuration. Carbon cloth, graphite cloth and dynamically stable anode (DSA) served as ideal anode material with carbon cloth and graphite mesh reaching the open circuit voltage (OCV) of acetate oxidation (-500 mV vs. Ag/AgCl). The effect of increasing concentration of acetate on anode OCV was also investigated and results showed that on increasing the acetate concentration from 10 mM to 40 mM has no adverse impact on the anodic activity towards electrochemical oxidation of acetate. The AC cathode showed stable current (-1.2 mA/cm2) over a period of 100 days.

摘要

微生物燃料电池 (MFC) 是一种新型的生物电化学装置,通过细菌的代谢活动将生物质自发转化为电能。微生物发电可能成为未来生物能源的一个重要来源,因为 MFC 提供了从各种可溶性或溶解的复杂有机废物和可再生生物质中提取电流的可能性。然而,这些设备中使用的材料仍然不经济,研究人员在 MFC 中使用不同的材料作为阴极和阳极。这导致了性能的变化,难以进行比较。我们测试了几种市售材料作为乙酸进料 MFC 中的阳极的适用性。此外,还测试了一种新型的非铂化活性炭 (AC) 基气体多孔空气阴极。阳极和阴极都在半电池配置中进行了测试。碳纤维布、石墨布和动态稳定阳极 (DSA) 作为理想的阳极材料,碳纤维布和石墨网达到了乙酸氧化的开路电压 (-500 mV 相对于 Ag/AgCl)。还研究了增加乙酸浓度对阳极开路电压的影响,结果表明,将乙酸浓度从 10 mM 增加到 40 mM 对乙酸电化学氧化的阳极活性没有不利影响。AC 阴极在 100 天内稳定地产生电流 (-1.2 mA/cm2)。

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