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Reference and counter electrode positions affect electrochemical characterization of bioanodes in different bioelectrochemical systems

机译:参比电极和对电极的位置会影响不同生物电化学系统中生物阳极的电化学表征

摘要

The placement of the reference electrode (RE) in various bioelectrochemical systems is often varied to accommodate different reactor configurations. While the effect of the RE placement is well understood from a strictly electrochemistry perspective, there are impacts on exoelectrogenic biofilms in engineered systems that have not been adequately addressed. Varying distances between the working electrode (WE) and the RE, or the RE and the counter electrode (CE) in microbial fuel cells (MFCs) can alter bioanode characteristics. With well-spaced anode and cathode distances in an MFC, increasing the distance between the RE and anode (WE) altered bioanode cyclic voltammograms (CVs) due to the uncompensated ohmic drop. Electrochemical impedance spectra (EIS) also changed with RE distances, resulting in a calculated increase in anode resistance that varied between 17 and 31Ω (-0.2V). While WE potentials could be corrected with ohmic drop compensation during the CV tests, they could not be automatically corrected by the potentiostat in the EIS tests. The electrochemical characteristics of bioanodes were altered by their acclimation to different anode potentials that resulted from varying the distance between the RE and the CE (cathode). These differences were true changes in biofilm characteristics because the CVs were electrochemically independent of conditions resulting from changing CE to RE distances. Placing the RE outside of the current path enabled accurate bioanode characterization using CVs and EIS due to negligible ohmic resistances (0.4Ω). It is therefore concluded for bioelectrochemical systems that when possible, the RE should be placed outside the current path and near the WE, as this will result in more accurate representation of bioanode characteristics. © 2014 Wiley Periodicals, Inc.
机译:在各种生物电化学系统中参考电极(RE)的放置通常会发生变化,以适应不同的反应器配置。尽管从严格的电化学角度已经很好地理解了RE放置的影响,但对工程系统中的放电生物膜的影响尚未得到充分解决。微生物燃料电池(MFCs)中的工作电极(WE)与RE之间或RE与对电极(CE)之间的距离变化会改变生物阳极的特性。在MFC中阳极和阴极之间的间距均匀时,由于未补偿的欧姆压降,增加了RE和阳极(WE)之间的距离,从而改变了生物阳极循环伏安图(CV)。电化学阻抗谱(EIS)也随RE距离而变化,导致阳极电阻的计算得出的增加在17到31Ω(-0.2V)之间变化。虽然在CV测试中可以通过欧姆降补偿来校正WE电位,但在EIS测试中恒电位仪无法自动校正它们。生物阳极的电化学特性因其适应不同的阳极电势而改变,这是由于改变RE和CE(阴极)之间的距离而产生的。这些差异是生物膜特性的真正变化,因为CV在电化学上与由CE到RE距离变化导致的条件无关。由于可忽略的欧姆电阻(0.4Ω),将RE放置在电流路径之外可以使用CV和EIS进行准确的生物阳极表征。因此,对于生物电化学系统,可以得出结论,在可能的情况下,应将RE放置在电流路径之外,并在WE附近,因为这将导致更准确地表示生物阳极的特性。 ©2014 Wiley Periodicals,Inc.

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