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Concurrent Control of Power Overshoot and Voltage Reversal with Series Connection of Parallel-Connected Microbial Fuel Cells

机译:串联连接的微生物燃料电池的功率超调和电压反转的并发控制

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One in four microbial fuel cell (MFC) units suffers from power overshoot. Series connection of the unit to a high-current-producing unit showed significant current loss (57%) due to power overshoot and the resultant voltage reversal. To concurrently control the power overshoot and voltage reversal, the two MFC units in series were converted to parallel connection, and this was then connected in series with another parallel-connected MFC group. The current loss for series connection of the two parallel-connected MFCs was as small as 3% compared to the sum of the maximum current of the four individual MFC units, without power overshoot; the anode potentials in the units were kept low between -0.24 V and -0.10 V at which electrochemically active bacteria can be easily grown. These results show that series connection of parallel-connected MFCs could be a readily applicable way for concurrently controlling the power overshoot and voltage reversal in MFC systems.
机译:四分之一的微生物燃料电池(MFC)单元会遭受功率过冲。该单元与高电流产生单元的串联连接由于功率过冲和由此产生的电压反转而显示出显着的电流损耗(57%)。为了同时控制电源过冲和电压反转,将两个串联的MFC单元转换为并联,然后将其与另一个并联的MFC组串联。与四个单独的MFC单元的最大电流之和相比,两个并联的MFC的串联连接的电流损耗小至3%,而没有功率过冲;单元中的阳极电位保持在-0.24 V至-0.10 V之间,在此电位下,电化学活性细菌易于生长。这些结果表明,并联连接的MFC的串联连接可能是同时控制MFC系统中的功率过冲和电压反转的一种容易应用的方法。

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