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Electricity generation and microbial community in response to short-term changes in stack connection of self-stacked submersible microbial fuel cell powered by glycerol

机译:发电和微生物群落响应甘油供电的自堆叠潜水微生物燃料电池堆叠连接的短期变化

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摘要

Stack connection (i.e., in series or parallel) of microbial fuel cell (MFC) is an efficient way to boost the power output for practical application. However, there is little information available on short-term changes in stack connection and its effect on the electricity generation and microbial community. In this study, a self-stacked submersible microbial fuel cell (SSMFC) powered by glycerol was tested to elucidate this important issue. In series connection, the maximum voltage output reached to 1.15 V, while maximum current density was 5.73 mA in parallel. In both connections, the maximum power density increased with the initial glycerol concentration. However, the glycerol degradation was even faster in parallel connection. When the SSMFC was shifted from series to parallel connection, the reactor reached to a stable power output without any lag phase. Meanwhile, the anodic microbial community compositions were nearly stable. Comparatively, after changing parallel to series connection, there was a lag period for the system to get stable again and the microbial community compositions became greatly different. This study is the first attempt to elucidate the influence of short-term changes in connection on the performance of MFC stack, and could provide insight to the practical utilization of MFC.
机译:微生物燃料电池(MFC)的堆叠连接(串联或并联)是提高实际应用的电源输出的有效方法。但是,在堆叠连接中的短期变化及其对发电和微生物群落的影响几乎没有信息。在该研究中,测试了由甘油供电的自堆叠潜式微生物燃料电池(SSMFC)以阐明这种重要问题。在串联连接中,最大电压输出达到1.15 V,而最大电流密度平行为5.73 mA。在两个连接中,最大功率密度随着初始甘油浓度的增加而增加。然而,甘油降解在并联连接中甚至更快。当SSMFC从串移到并联连接时,电抗器达到稳定的电源输出而没有任何滞后阶段。同时,阳极微生物群落组合物几乎是稳定的。相比之下,在改变平行于串联连接之后,系统再次进行稳定存在滞后周期,微生物群落组成变得大大不同。本研究首次试图阐明关于MFC堆栈的性能相关性的短期变化的影响,并可能够深入了解MFC的实际利用。

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