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首页> 外文期刊>Biotechnology and Bioengineering >Impedance Spectroscopy as a Tool for Non-Intrusive Detection of Extracellular Mediators in Microbial Fuel Cells
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Impedance Spectroscopy as a Tool for Non-Intrusive Detection of Extracellular Mediators in Microbial Fuel Cells

机译:阻抗谱作为一种非侵入性检测微生物燃料电池中细胞外介体的工具

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摘要

Endogenously produced, diffusible redox mediators can act as electron shuttles for bacterial respiration. Accordingly, the mediators also serve a critical role in microbial fuel cells (MFCs), as they assist extracellular electron transfer from the bacteria to the anode serving as the intermediate electron sink. Electrochemical impedance spectroscopy (EIS) may be a valuable tool for evaluating the role of mediators in an operating MFC. EIS offers distinct advantages over some conventional analytical methods for the investigation of MFC systems because EIS can elucidate the electrochemical properties of various charge transfer processes in the bio-energetic pathway. Preliminary investigations of Shewanella oneidensis DSP10-based MFCs revealved that even low quantities of extracellular mediators significantly influence the impedance behavior of MFCs. EIS results also suggested that for the model MFC studied, electron transfer from the mediator to anode may be up to 15 times faster than the electron transfer from bacteria to the mediator. When a simple carbonate membrane separated the anode and cathode chambers, the extracellular mediators were also detected at the cathode, indicating diffusion from the anode under open circuit conditions. The findings demonstrated that EIS can be used as a tool to indicate presence of extracellular redox mediators produced by microorganisms and their participation in extracellular electron shuttling. Biotechnol. Bioeng. 2009;104: 882-891.
机译:内源性产生的,可扩散的氧化还原介体可以充当细菌呼吸的电子穿梭体。因此,介体在微生物燃料电池(MFC)中也起着至关重要的作用,因为它们协助细胞外电子从细菌转移到充当中间电子阱的阳极。电化学阻抗谱(EIS)可能是评估操作MFC中介体作用的有价值的工具。 EIS与研究MFC系统的某些常规分析方法相比具有明显的优势,因为EIS可以阐明生物能途径中各种电荷转移过程的电化学性质。对基于Shewanella oneidensis DSP10的MFC的初步研究表明,即使少量的细胞外介体也会显着影响MFC的阻抗行为。 EIS结果还表明,对于所研究的MFC模型,从介体到阳极的电子传递可能比从细菌到介体的电子传递快15倍。当简单的碳酸盐膜分隔阳极室和阴极室时,在阴极处还检测到细胞外介体,表明在开路条件下从阳极扩散。研究结果表明,EIS可以用作指示微生物产生的细胞外氧化还原介体及其参与细胞外电子穿梭的工具。生物技术。生恩2009; 104:882-891。

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