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利用碳酸氢盐缓冲液和质子转移机制在微生物燃料电池中实现可持续发电。

Sustainable power generation in microbial fuel cells using bicarbonate buffer and proton transfer mechanisms.

作者信息

Fan Yanzhen, Hu Hongqiang, Liu Hong

机构信息

Department of Biological and Ecological Engineering, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Environ Sci Technol. 2007 Dec 1;41(23):8154-8. doi: 10.1021/es071739c.

Abstract

Phosphate buffer solution has been commonly used in MFC studiesto maintain a suitable pH for electricity-generating bacteria and/or to increase the solution conductivity. However, addition of a high concentration of phosphate buffer in MFCs could be expensive, especially for wastewater treatment. In this study, the performances of MFCs with cloth electrode assemblies (CEA) were evaluated using bicarbonate buffer solutions. A maximum power density of 1550 W/m3 (2770 mW/ m2) was obtained at a current density of 0.99 mA/cm2 using a pH 9 bicarbonate buffer solution. Such a power density was 38.6% higher than that using a pH 7 phosphate buffer at the same concentration of 0.2 M. Based on the quantitative comparison of free proton transfer rates, diffusion rates of pH buffer species, and the current generated, a facilitated proton transfer mechanism was proposed for MFCs in the presence of the pH buffers. The excellent performance of MFCs using bicarbonate as pH buffer and proton carrier indicates that bicarbonate buffer could be served as a low-cost and effective pH buffer for practical applications, especially for wastewater treatment.

摘要

磷酸盐缓冲溶液在微生物燃料电池(MFC)研究中已被广泛使用,以维持产电细菌适宜的pH值和/或提高溶液的电导率。然而,在MFC中添加高浓度的磷酸盐缓冲液成本可能较高,特别是用于废水处理时。在本研究中,使用碳酸氢盐缓冲溶液评估了带有布电极组件(CEA)的MFC的性能。使用pH值为9的碳酸氢盐缓冲溶液,在电流密度为0.99 mA/cm²时获得了1550 W/m³(2770 mW/m²)的最大功率密度。在相同浓度0.2 M的情况下,该功率密度比使用pH值为7的磷酸盐缓冲溶液时高38.6%。基于对游离质子转移速率、pH缓冲物种扩散速率和产生的电流的定量比较,提出了在pH缓冲液存在下MFC的质子转移促进机制。使用碳酸氢盐作为pH缓冲剂和质子载体的MFC的优异性能表明,碳酸氢盐缓冲液可作为一种低成本且有效的pH缓冲剂用于实际应用,特别是废水处理。

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