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Effects of substrate concentrations on performance of serially connected microbial fuel cells (MFCs) operated in a continuous mode

机译:底物浓度对以连续模式运行的串联式微生物燃料电池(MFCs)性能的影响

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摘要

Stacking of microbial fuel cells (MFC) by connecting multiple small-sized units in a series is used for generating higher power from the MFCs. However, voltage reversal is a critical problem in a serially connected MFC unit. The voltage reversal oftenoccurs when substrate concentration is relatively low in the anodic compartment. Two rectangular individual cells were stacked together in series: MFC1 was fed with 1 g glucose L~(-1) throughout the experiment while MFC2 was fed with various concentrations of glucose (0.1, 0.2, 0.3, 0.5 and 0.8 g L~(-1)). Voltage reversal occurred when the stack configuration was performed using (1 + 0.1) g glucose L~(-1). The stacked configurations with (1 + 0.2, 1 + 0.3, 1 + 0.5 and 1 +0.8) g glucose L~(-1) were operated successfully without the voltage reversal. The maximum powers of 1.88,2.04, 3.6,2.5 and 2.18 mW were obtained with the stacked configurations of (1 + 0.2), (1 + 0.3), (1 + 0.5), (1 + 0.8) and (1 + 1) g glucose L~(-1), respectively. Except in the stacked configuration with (1 + 0.1) g glucose L~(-1), the stacked voltages obtained were similar.
机译:通过串联连接多个小型单元来堆叠微生物燃料电池(MFC)用于从MFC产生更高的功率。但是,在串联连接的MFC单元中,电压反转是一个关键问题。当阳极室中的基板浓度相对较低时,经常会发生电压反转。两个矩形的单个电池串联在一起堆叠:在整个实验过程中,MFC1均被喂食1 g L〜(-1)葡萄糖L〜(-1),而MFC2则被喂食各种浓度的葡萄糖(0.1、0.2、0.3、0.5和0.8 g L〜(- 1))。当使用(1 + 0.1)g葡萄糖L〜(-1)进行堆叠配置时,发生电压反转。具有(1 + 0.2、1 + 0.3、1 + 0.5和1 +0.8)g葡萄糖L〜(-1)的堆叠配置可以成功运行,而不会发生电压反转。使用(1 + 0.2),(1 + 0.3),(1 + 0.5),(1 + 0.8)和(1 + 1)的堆叠配置可获得1.88、2.04、3.6、2.5和2.18 mW的最大功率g葡萄糖L〜(-1)。除了在具有(1 + 0.1)g葡萄糖L〜(-1)的堆叠构造中,获得的堆叠电压是相似的。

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