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首页> 外文期刊>International journal of hydrogen energy >Comparative evaluation of performance and electrochemistry of microbial fuel cells with different anode structures and materials
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Comparative evaluation of performance and electrochemistry of microbial fuel cells with different anode structures and materials

机译:具有不同阳极结构和材料的微生物燃料电池的性能和电化学性能的比较评估

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Various materials and anode structures have been applied to enhance MFC performance. However, their comparative evaluation of performance and electrochemistry has not yet been investigated in detail under a same condition. In this study, a carbon-cloth anode, an anode-cathode assembly, and a brush anode with two different orientations were tested under a same condition for comparative analyses on their performance and electrochemistry, in order to reveal their unique electrochemical characteristics. The brush anode cells exhibited better performance than the carbon cloth cells. The brush anodes showed 41-72% higher maximum power densities, 18-75% higher maximum current density and 24-32% higher optimum current densities than the carbon cloth anodes. The brush anodes showed 25-43 Omega lower anodic polarization resistance than the carbon cloth anodes. The brush anodes showed 1.6-21.2 Omega lower ohmic impedance, 7.7-10.6 Omega lower charge transfer impedance and 9.3-31.8 Omega lower anodic impedance than the carbon cloth anodes. Anodic ohmic impedance was greatest in the carbon-cloth-anode MFC (21.9 Omega), where loose contact between a carbon cloth and a current collector might cause the high ohmic resistance, and large solution resistance in the cell could diminish anode performance due to slow ion transport. In order to improve MFC performance by modifying anode structures, we suggest the followings: 1) an anode should have large surface area, 2) anodic carbon material and a metal current collector must be tightly connected, 3) locating a brush anode closer to a cathode can be important. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:已经应用了各种材料和阳极结构来增强MFC性能。但是,尚未在相同条件下详细研究其性能和电化学性能的比较评估。在这项研究中,在相同条件下测试了具有两个不同方向的碳布阳极,阳极阴极组件和电刷阳极,以比较它们的性能和电化学性能,以揭示其独特的电化学特性。电刷阳极电池表现出比碳布电池更好的性能。与碳布阳极相比,电刷阳极的最大功率密度高41-72%,最大电流密度高18-75%,最佳电流密度高24-32%。刷式阳极显示出比碳布阳极低25-43Ω的阳极极化电阻。与碳布阳极相比,电刷阳极的欧姆阻抗低1.6-21.2Ω,电荷转移阻抗低7.7-10.6Ω,阳极阻抗低9.3-31.8Ω。碳布阳极MFC(21.9 Omega)中的阳极欧姆阻抗最大,其中碳布与集电器之间的松动接触可能会导致高欧姆电阻,而电池中较大的固溶电阻可能会因缓慢而降低阳极性能离子传输。为了通过修改阳极结构来改善MFC性能,我们提出以下建议:1)阳极应具有较大的表面积; 2)阳极碳材料和金属集电器必须紧密连接; 3)将电刷阳极放置在更靠近阳极的位置。阴极很重要。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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