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通过电化学阻抗谱分析生物阳极性能。

Analysis of bio-anode performance through electrochemical impedance spectroscopy.

作者信息

ter Heijne Annemiek, Schaetzle Olivier, Gimenez Sixto, Navarro Lucia, Hamelers Bert, Fabregat-Santiago Francisco

机构信息

Sub-department of Environmental Technology, Wageningen University, Bornse Weilanden 9, P.O. Box 17, 6700 AA Wageningen, The Netherlands.

Wetsus, Centre of Excellence for Sustainable Water Technology, Oostergoweg 9, P.O. Box 1113, 8900 CC Leeuwarden, The Netherlands.

出版信息

Bioelectrochemistry. 2015 Dec;106(Pt A):64-72. doi: 10.1016/j.bioelechem.2015.04.002. Epub 2015 Apr 3.

Abstract

In this paper we studied the performance of bioanodes under different experimental conditions using polarization curves and impedance spectroscopy. We have identified that the large capacitances of up to 1 mF·cm(-2) for graphite anodes have their origin in the nature of the carbonaceous electrode, rather than the microbial culture. In some cases, the separate contributions of charge transfer and diffusion resistance were clearly visible, while in other cases their contribution was masked by the high capacitance of 1 mF·cm(-2). The impedance data were analyzed using the basic Randles model to analyze ohmic, charge transfer and diffusion resistances. Increasing buffer concentration from 0 to 50mM and increasing pH from 6 to 8 resulted in decreased charge transfer and diffusion resistances; lowest values being 144 Ω·cm(2) and 34 Ω·cm(2), respectively. At acetate concentrations below 1 mM, current generation was limited by acetate. We show a linear relationship between inverse charge transfer resistance at potentials close to open circuit and saturation (maximum) current, associated to the Butler-Volmer relationship that needs further exploration.

摘要

在本文中,我们使用极化曲线和阻抗谱研究了不同实验条件下生物阳极的性能。我们已经确定,石墨阳极高达1 mF·cm(-2)的大电容源于碳质电极的性质,而非微生物培养物。在某些情况下,电荷转移和扩散电阻的单独贡献清晰可见,而在其他情况下,它们的贡献被1 mF·cm(-2)的高电容所掩盖。使用基本的兰德尔模型分析阻抗数据,以分析欧姆电阻、电荷转移电阻和扩散电阻。将缓冲液浓度从0增加到50 mM以及将pH从6增加到8会导致电荷转移和扩散电阻降低;最低值分别为144 Ω·cm(2)和34 Ω·cm(2)。在醋酸盐浓度低于1 mM时,电流产生受醋酸盐限制。我们展示了接近开路电位时的反向电荷转移电阻与饱和(最大)电流之间的线性关系,这与巴特勒-沃尔默关系相关,需要进一步探索。

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