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Cathode materials for ceramic based microbial fuel cells (MFCs)

机译:陶瓷基微生物燃料电池(MFC)的阴极材料

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This study showed the electrochemical performance of different cathode electrodes tested on a ceramic separator functioning as a cation exchange membrane. Particularly, three different carbonaceous-based materials (carbon cloth (CC), carbon mesh (CM) and carbon veil (CV)) have been used as an electrode and as the current collector. When used as an electrode, CC outperformed the others. The carbonaceous materials have been modified using conductive paint (PA) and micro porous layer (MPL). With these modifications, the current output was two three times higher. Generally, the current produced was slightly higher with MPL treatment compared to PA except in the case of CV-MPL that had lower output probably due to the negative effect of the heat treatment on the mechanical strength of the CV. In the case of PA, the current collectors do not seem to affect the output. The same consideration can also be done for the MPL except for the CV. The surface morphology seems to explain the results. Linear correlation was found between current produced and nanoscale roughness and skewness. The results indicated that those morphological parameters increased the contact between the cathode and the ceramic surface, thus enhancing the current generated. The further addition of the inorganic non-platinum group catalyst (Fe-AAPyr) on the surface significantly enhanced the performances. Following MPL modification and MPL-Fe-AAPyr addition, CM was the most cost effective support. CV was the most cost effective support with PA modification. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究表明,在用作阳离子交换膜的陶瓷隔膜上测试了不同阴极的电化学性能。特别地,三种不同的含碳材料(碳布(CC),碳网(CM)和碳面纱(CV))已被用作电极和集流体。当用作电极时,CC优于其他电极。含碳材料已使用导电涂料(PA)和微孔层(MPL)进行了改性。经过这些修改,电流输出提高了两倍三倍。通常,与MP相比,MPL处理产生的电流略高于PA,但CV-MPL输出较低的情况可能是由于热处理对CV机械强度的负面影响。对于PA,集电器似乎不会影响输出。除CV外,对于MPL也可以进行相同的考虑。表面形态似乎可以解释结果。发现电流产生与纳米级粗糙度和偏度之间存在线性关系。结果表明,这些形态学参数增加了阴极和陶瓷表面之间的接触,从而增强了产生的电流。在表面上进一步添加无机非铂基催化剂(Fe-AAPyr)可以显着提高性能。在修改MPL和添加MPL-Fe-AAPyr之后,CM是最具成本效益的支持。 CV是使用PA修改的最具成本效益的支持。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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