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硝酸和乙二胺表面修饰的活性炭纤维毡阳极改善无膜单室空气阴极微生物燃料电池的性能。

Improved performance of membrane free single-chamber air-cathode microbial fuel cells with nitric acid and ethylenediamine surface modified activated carbon fiber felt anodes.

机构信息

College of Environmental Science and Engineering, South China University of Technology, Guangzhou 510006, China.

出版信息

Bioresour Technol. 2011 Jan;102(1):422-6. doi: 10.1016/j.biortech.2010.06.046. Epub 2010 Jul 1.

Abstract

Surface modifications of anode materials are important for enhancing power generation of microbial fuel cell (MFC). Membrane free single-chamber air-cathode MFCs, MFC-A and MFC-N, were constructed using activated carbon fiber felt (ACF) anodes treated by nitric acid and ethylenediamine (EDA), respectively. Experimental results showed that the start-up time to achieve the maximum voltages for the MFC-A and MFC-N was shortened by 45% and 51%, respectively as compared to that for MFC-AT equipped with an unmodified anode. Moreover, the power output of MFCs with modified anodes was significantly improved. In comparison with MFC-AT which had a maximum power density of 1304 mW/m(2), the MFC-N achieved a maximum power density of 1641 mW/m(2). The nitric acid-treated anode in MFC-A increased the power density by 58% reaching 2066 mW/m(2). XPS analysis of the treated and untreated anode materials indicated that the power enhancement was attributable to the changes of surface functional groups.

摘要

阳极材料的表面改性对于提高微生物燃料电池(MFC)的发电性能非常重要。使用经过硝酸和乙二胺(EDA)处理的活性炭纤维毡(ACF)阳极分别构建了无膜单室空气阴极 MFC-MFC-A 和 MFC-N。实验结果表明,与配备未改性阳极的 MFC-AT 相比,MFC-A 和 MFC-N 的最大电压达到时间分别缩短了 45%和 51%。此外,改性阳极的 MFC 的功率输出得到了显著提高。与最大功率密度为 1304 mW/m(2)的 MFC-AT 相比,MFC-N 的最大功率密度达到了 1641 mW/m(2)。MFC-A 中的硝酸处理阳极的功率密度增加了 58%,达到 2066 mW/m(2)。对处理和未处理的阳极材料的 XPS 分析表明,功率增强归因于表面官能团的变化。

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