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Crosslinked poly(vinyl alcohol) membrane as separator for domestic wastewater fed dual chambered microbial fuel cells

机译:交联聚(乙烯醇)膜作为国内废水的分离器喂养双腔微生物燃料电池

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The use of Nafion as a proton exchange membrane in microbial fuel cells (MFCs) is expensive with operational issues like biofouling and fuel crossover limiting the practical application of the device to harvest energy from wastewaters. In this connection, a facile route is adapted to fabricate a Nafion-alternative membrane using poly(vinyl alcohol) (PVA) crosslinked with glutaraldehyde (GA) as a relatively low-cost, effective membrane for MFCs. The crosslinking of the PVA membrane resulted in a reduction in hydroxyl groups and the formation of the acetal ring and ether linkage demonstrated by controlled water uptake and swelling ratio with enhanced thermo-mechanical stability. The crosslinked membrane displayed higher power density than those typically reported for domestic wastewater fed MFCs, reaching a maximum of 158.28 mW/m(2) for the fabricated membrane. The PVA-GA membrane with antimicrobial activity, high power performance, and negligible fuel crossover shows its potential as a separator in future MFCs based on its performance and low cost of installation. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用Nafion作为微生物燃料电池(MFC)中的质子交换膜具有昂贵的,类似于生物污染和燃料交叉的操作问题,限制了装置的实际应用,从废水中收获能量。在这方面,适于使用与戊二醛(Ga)交联的聚(乙烯醇)(PVA)作为相对低成本,有效膜的MFC制造使用聚(乙烯醇)(PVA)的Nafion替代膜。 PVA膜的交联导致羟基的还原,并通过受控的水吸收和溶胀比形成缩醛环和醚键,具有增强的热机械稳定性。交联膜的功率密度高于通常报道的国内废水喂养MFC的功率密度,达到制造膜的最多158.28mW / m(2)。 PVA-GA膜具有抗微生物活性,高功率性能和可忽略不计的燃料交叉显示其作为未来MFC中的分离器的潜力,基于其性能和低安装成本。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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