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首页> 外文期刊>Journal of power sources >Control of voltage reversal in serially stacked microbial fuel cells through manipulating current: Significance of critical current density
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Control of voltage reversal in serially stacked microbial fuel cells through manipulating current: Significance of critical current density

机译:通过操纵电流控制串联堆叠式微生物燃料电池中的电压反向:临界电流密度的意义

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Voltage reversal is a critical issue for serially stacking microbial fuel cells (MFCs). It occurs when current density in stacked MFCs increases over critical current density (j(critical)). In this study, we clearly show that no voltage reversal occurs in stacked MFCs if current density is maintained below j(critical) where the anode and the cathode potential in an inferior unit become identical, with an external resistance placed between individual MFCs. We define threshold resistance (R-threshold) that enables current density below j(critical) in stacked MFCs, and demonstrate the validity of R-threshold theoretically and experimentally. Voltage reversal is controlled in the stacked MFC equipped with R-threshold by which the current density in the stacked MFC is kept below j(critical). In comparison, a stacked MFC without R-threshold faces voltage reversal over j(critical). Energy loss in R-threshold is comparable to energy loss with other voltage control methods, such as passive or active methods. However, the R-threshold approach is a simple, inexpensive way of controlling voltage reversal, especially for small MFCs (<50 mL). (C) 2015 Elsevier B.V. All rights reserved.
机译:反向电压是串联堆叠微生物燃料电池(MFC)的关键问题。当堆叠式MFC中的电流密度超过临界电流密度(j(critical))时,就会发生这种情况。在这项研究中,我们清楚地表明,如果电流密度保持在j(临界)以下,则堆叠式MFC中不会发生电压反转,在此情况下,下级单元中的阳极和阴极电位变得相同,并且外部电阻位于各个MFC之间。我们定义阈值电阻(R阈值),使堆叠式MFC中的电流密度低于j(临界),并在理论上和实验上证明R阈值的有效性。在具有R阈值的堆叠式MFC中控制电压反转,通过该阈值,堆叠式MFC中的电流密度保持在j(临界)以下。相比之下,没有R阈值的堆叠式MFC面对的电压反转超过j(临界)。 R阈值的能量损失与其他电压控制方法(例如无源或有源方法)的能量损失相当。但是,R阈值方法是一种控制电压反转的简单,廉价的方法,尤其是对于小型MFC(<50 mL)。 (C)2015 Elsevier B.V.保留所有权利。

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