College of Environmental Science and Engineering, South China University of Technology, Guangzhou 510006, China.
Bioresour Technol. 2011 Jan;102(1):422-6. doi: 10.1016/j.biortech.2010.06.046. Epub 2010 Jul 1.
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.
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。