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Evaluating a multi-panel air cathode through electrochemical and biotic tests

机译:通过电化学和生物测试评估多面板空气阴极

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To scale up microbial fuel cells (MFCs), larger cathodes need to be developed that can use air directly, rather than dissolved oxygen, and have good electrochemical performance. A new type of cathode design was examined here that uses a "window-pane" approach with fifteen smaller cathodes welded to a single conductive metal sheet to maintain good electrical conductivity across the cathode with an increase in total area. Abiotic electrochemical tests were conducted to evaluate the impact of the cathode size (exposed areas of 7 cm(2), 33 cm(2), and 6200 cm(2)) on performance for all cathodes having the same active catalyst material. Increasing the size of the exposed area of the electrodes to the electrolyte from 7 cm(2) to 33 cm(2) (a single cathode panel) decreased the cathode potential by 5%, and a further increase in size to 6200 cm(2) using the multi-panel cathode reduced the electrode potential by 55% (at 0.6 A m(-2)), in a 50 mM phosphate buffer solution (PBS). In 85 L MFC tests with the largest cathode using wastewater as a fuel, the maximum power density based on polarization data was 0.083 +/- 0.006 W m(-2) using 22 brush anodes to fully cover the cathode, and 0.061 +/- 0.003 W m(-2) with 8 brush anodes (40% of cathode projected area) compared to 0.304 +/- 0.009 W m(-2) obtained in the 28 mL MFC. Recovering power from large MFCs will therefore be challenging, but several approaches identified in this study can be pursued to maintain performance when increasing the size of the electrodes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了按比例放大微生物燃料电池(MFC),需要开发更大的阴极,这些阴极可以直接使用空气而不是溶解氧,并具有良好的电化学性能。此处研究了一种新型的阴极设计,该设计使用“窗玻璃”方法,将十五个较小的阴极焊接到单个导电金属板上,以在整个阴极上保持良好的导电性,并增加了总面积。进行了非生物电化学测试,以评估阴极尺寸(暴露面积分别为7 cm(2),33 cm(2)和6200 cm(2))对所有具有相同活性催化剂材料的阴极性能的影响。将电极对电解质的暴露区域的尺寸从7 cm(2)增加到33 cm(2)(单个阴极板)会使阴极电势降低5%,尺寸进一步增加至6200 cm(2) )使用多面板阴极在50 mM磷酸盐缓冲溶液(PBS)中将电极电势降低了55%(在0.6 A m(-2)时)。在使用废水作为燃料的最大阴极的85 L MFC测试中,基于极化数据的最大功率密度为0.083 +/- 0.006 W m(-2),使用22个电刷阳极完全覆盖了阴极,而0.061 +/- 0.008 W m(-2),带有8个刷式阳极(阴极投影面积的40%),而在28 mL MFC中获得的0.304 +/- 0.009 W m(-2)。因此,从大型MFC回收能量将具有挑战性,但是当增加电极尺寸时,可以采用本研究中确定的几种方法来维持性能。 (C)2018 Elsevier Ltd.保留所有权利。

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