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Step-feed strategy enhances performance of unbuffered air-cathode microbial fuel cells

机译:分步进给策略提高了无缓冲空气阴极微生物燃料电池的性能

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Step-feed anolyte recirculation is compared with single-inlet recirculation feed in a single-chamber air-cathode microbial fuel cell (MFC) under buffer-less conditions, to examine the effects of distributing the organic load and cathodically increased electrolyte pH across the anode. The step-feed effects on proton transfer, maximum power output, and chemical oxygen demand removal are investigated. The results show that better proton transfer could be induced by using a step-feed configuration with uniform flow distribution across four anode sections of MFCs. Thus, the maximal power density is increased from 3.5 W m?3 to 4.12 W m?3, indicating a 17.7% increase in the maximum power density. A slight increase (9.9%) is obtained in coulombic efficiency (CE, 11.1%). Additional 5.1% increases in power (4.33 W m?3) and 15% increases in CE (approximately 12.5%) are observed after increasing the flow distribution toward the anode section closest to the cathode. This study demonstrates that step-feed could be a beneficial operational strategy for future MFC designs.
机译:在无缓冲条件下,在单室空气阴极微生物燃料电池(MFC)中,将分步进料的阳极电解液再循环与单入口再循环进料进行比较,以检查在阳极上分配有机负荷和阴极增加电解质pH的影响。研究了分步进料对质子转移,最大功率输出和化学需氧量去除的影响。结果表明,通过使用步进进料配置,在MFC的四个阳极部分上具有均匀的流量分布,可以诱导更好的质子转移。因此,最大功率密度从3.5 W m ?3 增加到4.12 W m ?3 最大功率密度提高了17.7%。库仑效率(CE,11.1%)略有提高(9.9%)。在增加流向最靠近阳极部分的流量分布后,观察到功率额外增加了5.1%(4.33 W m ?3 ),CE增长了15%(约12.5%)。到阴极。这项研究表明,分步进给对于将来的MFC设计可能是有益的操作策略。

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