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Assessment of expanded polystyrene as a separator in microbial fuel cell

机译:膨胀聚苯乙烯作为微生物燃料电池隔板的评估

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摘要

Separators are considered as an important component in microbial fuel cells (MFCs) to facilitate ion transport and to prevent electrode short circuiting. In the present study, expanded polystyrene (EPS) was evaluated for the first time as a separator in a single-chamber air cathode and dual chamber aqueous cathode MFCs. The characteristics and performance of EPS were analyzed and compared with other conventionally used separators used in MFCs and was found to be competitive. Initially, the EPS was less impermeable to protons, resulting in delayed process startup (17 days) and stabilization (57 days), but gradually exhibited improved and stable performance. In the air cathode MFC with the EPS as the separator and domestic wastewater as the substrate, power production was 391 mW/m(2), while power output of the aqueous cathode MFC was 328 mW/m(2). The characteristics and cost analysis of EPS indicate that it can be a potential candidate as a separator in scaled-up MFC applications.
机译:隔离器被认为是微生物燃料电池(MFCs)的重要组成部分,以促进离子传输并防止电极短路。在本研究中,首次评估了膨胀聚苯乙烯(EPS)作为单腔空气阴极和双腔水性阴极MFC中的隔离物。分析了EPS的特性和性能,并将其与MFC中使用的其他常规分隔器进行了比较,发现它们具有竞争力。最初,EPS对质子的渗透性较小,导致延迟的过程启动(17天)和稳定化(57天),但逐渐表现出更好的性能和稳定的性能。在以EPS为分离器和生活污水为基材的空气阴极MFC中,发电量为391 mW / m(2),而水性阴极MFC的输出功率为328 mW / m(2)。 EPS的特性和成本分析表明,在按比例放大的MFC应用程序中,EPS可以作为分隔符的潜在候选者。

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