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Relationship of methane and electricity production in two-chamber microbial fuel cell using sewage sludge as substrate

机译:以污水污泥为底物的两室式微生物燃料电池甲烷与发电的关系

摘要

The relationship of methane and electricity production from sewage sludge in a two-chamber microbial fuel cell (MFC) was studied. The results showed that methane production in the anode chamber could enhance the electricity production from sewage sludge, and the output voltage of the MFC with methane production (0.505-0.600 V) was higher than that of the MFC without it (0.506-0.576 V) in the stable electricity-producing stage. The polarization curves analysis of the two MFCs suggested that methane production could improve the performance characteristics of the MFC. Simultaneous methane and electricity production from sludge in the two-chamber MFC could maintain the mixed sludge in a suitable pH range in the anode chamber for electricity production. Meanwhile, simultaneous methane and electricity production could enhance the hydrolysis of sludge, which increased the reduction of sludge concentration (about 8.31% VSS) and offered more substrates to alleviate the competition between methane and electricity production. Additionally, the addition of 2-Bromoethanesulfonate (BES) could substantially affect the dominant archaea but had little effect on the dominant bacteria in the anode chamber. Copyright (C) 2014, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了两室微生物燃料电池(MFC)中污水污泥中甲烷与发电的关系。结果表明,在阳极室中产生甲烷可以提高污水污泥的发电量,具有甲烷产生能力的MFC(0.505-0.600 V)的输出电压高于没有甲烷产生能力的MFC(0.506-0.576 V)的输出电压。在稳定的发电阶段。两种MFC的极化曲线分析表明,甲烷的生产可以改善MFC的性能特征。在两室MFC中,污泥同时产生甲烷和发电,可以将混合污泥在阳极室中保持在合适的pH范围内,以进行发电。同时,甲烷和电力的同时生产可以促进污泥的水解,从而增加了污泥浓度的降低(约VSS的8.31%),并提供了更多的底物以减轻甲烷和电力之间的竞争。此外,添加2-溴乙烷磺酸盐(BES)可能会显着影响优势古细菌,但对阳极室中的优势细菌影响很小。 Hydrogen Energy Publications,LLC版权所有(C)2014。由Elsevier Ltd.出版。保留所有权利。

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