首页> 外文期刊>Bulletin of the Korean Chemical Society >Impedance and Thermodynamic Analysis of Bioanode, Abiotic Anode, and Riboflavin-Amended Anode in Microbial Fuel Cells
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Impedance and Thermodynamic Analysis of Bioanode, Abiotic Anode, and Riboflavin-Amended Anode in Microbial Fuel Cells

机译:微生物燃料电池中生物阳极,非生物阳极和核黄素修饰阳极的阻抗和热力学分析

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摘要

Understanding exoelectrogenic reactions of the bioanode is limited due to its complexity and the absence of analytics. Impedance and thermodynamics of bioanode, abiotic anode, and riboflavin-amended anode were evaluated. Activation overpotential of the bioanode was negligible compared with that of the abiotic anode. Impedance spectroscopy shows that the bioanode had much lower charge transfer resistance and higher capacitance than the abiotic anode in low frequency reaction. In high frequency reaction, the impedance parameters, however, were relatively similar between the bioanode and the abiotic anode. At open-circuit impedance spectroscopy, a high frequency arc was not detected in the abiotic anode in Nyquist plot. Addition of riboflavin induced a phase angle shift and created curvature in high-frequency arc of the abiotic anode, and it also drastically changed impedance spectra of the bioanode.
机译:由于其复杂性和缺乏分析,对生物阳极的放电反应的理解受到限制。评价了生物阳极,非生物阳极和核黄素修饰阳极的阻抗和热力学。与非生物阳极相比,生物阳极的激活超电势可以忽略。阻抗谱显示,在低频反应中,生物阳极比非生物阳极具有更低的电荷转移电阻和更高的电容。然而,在高频反应中,生物阳极和非生物阳极之间的阻抗参数相对相似。在开路阻抗谱中,在奈奎斯特图中非生物阳极中未检测到高频电弧。核黄素的加入引起非生物阳极高频电弧的相角移动并产生曲率,并且还大大改变了生物阳极的阻抗谱。

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