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首页> 外文期刊>Journal of power sources >Quantification of bio-anode capacitance in bioelectrochemical systems using Electrochemical Impedance Spectroscopy
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Quantification of bio-anode capacitance in bioelectrochemical systems using Electrochemical Impedance Spectroscopy

机译:使用电化学阻抗谱定量生物电化学系统中的生物阳极电容

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摘要

Understanding the electrochemical properties of bio-anodes is essential to improve performance of bioelectrochemical systems. Electrochemical Impedance Spectroscopy (EIS) is often used to study these properties in detail. Analysis of the EIS response, however, is challenging due to the interfering effect of the large capacitance of typically used graphite and carbon-based electrodes. In this study, we used flat electrodes made of conductive Fluorine-doped Tin Oxide (FTO) as anode, and monitored bio-anode performance. We show that with this configuration, it is possible to accurately separate the distinct contributions to the electrical response of the bio-anodes: charge transfer, biofilm and diffusion resistances, and biofilm capacitance. We observed that the capacitance of the biofilm increased from 2 μF cm−2to 450 μF cm−2during biofilm growth, showing a relationship with current and total produced charge. These results suggest that biofilm capacitance is a measure for the amount of active biomass in bioelectrochemical systems. At the end of the experiment, the biofilm was harvested from the FTO electrode and an average yield of 0.55 g COD biomass/mol e−was determined.
机译:了解生物阳极的电化学特性对于提高生物电化学系统的性能至关重要。电化学阻抗谱(EIS)通常用于详细研究这些特性。然而,由于通常使用的石墨和碳基电极的大电容的干扰效应,对EIS响应的分析具有挑战性。在这项研究中,我们使用由掺杂氟的导电氧化锡(FTO)制成的扁平电极作为阳极,并监测了生物阳极的性能。我们表明,通过这种配置,可以准确地分离出对生物阳极电响应的独特贡献:电荷转移,生物膜和扩散电阻以及生物膜电容。我们观察到,在生物膜生长过程中,生物膜的电容从2μFcm-2增大到450μFcm-2,显示出与电流和总电荷的关系。这些结果表明生物膜电容是生物电化学系统中活性生物量的量度。在实验结束时,从FTO电极上收获了生物膜,并确定了0.55μgCOD生物量/ mol e-的平均产量。

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