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用于提高空气阴极微生物燃料电池发电功率的石墨纤维刷阳极。

Graphite fiber brush anodes for increased power production in air-cathode microbial fuel cells.

作者信息

Logan Bruce, Cheng Shaoan, Watson Valerie, Estadt Garett

机构信息

Department of Civil and Environmental Engineering, The Penn State Hydrogen Energy (H2E) Center, Penn State University, University Park, Pennsylvania 16802, USA.

出版信息

Environ Sci Technol. 2007 May 1;41(9):3341-6. doi: 10.1021/es062644y.

Abstract

To efficiently generate electricity using bacteria in microbial fuel cells (MFCs), highly conductive noncorrosive materials are needed that have a high specific surface area (surface area per volume) and an open structure to avoid biofouling. Graphite brush anodes, consisting of graphite fibers wound around a conductive, but noncorrosive metal core, were examined for power production in cube (C-MFC) and bottle (B-MFC) air-cathode MFCs. Power production in C-MFCs containing brush electrodes at 9600 m2/m3 reactor volume reached a maximum power density of 2400 mW/m2 (normalized to the cathode projected surface area), or 73 W/m3 based on liquid volume, with a maximum Coulombic efficiency (CE) of 60%. This power density, normalized by cathode projected area, is the highest value yet achieved by an air-cathode system. The increased power resulted from a reduction in internal resistance from 31 to 8 Q. Brush electrodes (4200 m2/m3) were also tested in B-MFCs, consisting of a laboratory media bottle modified to have a single side arm with a cathode clamped to its end. B-MFCs inoculated with wastewater produced up to 1430 mW/m2 (2.3 W/m3, CE = 23%) with brush electrodes, versus 600 mW/m2 with a plain carbon paper electrode. These findings show that brush anodes that have high surface areas and a porous structure can produce high power densities, and therefore have qualities that make them ideal for scaling up MFC systems.

摘要

为了利用微生物燃料电池(MFC)中的细菌高效发电,需要具有高比表面积(每体积的表面积)和开放结构以避免生物污垢的高导电性、无腐蚀性材料。对由缠绕在导电但无腐蚀性金属芯上的石墨纤维组成的石墨刷阳极进行了研究,以用于立方体(C-MFC)和瓶式(B-MFC)空气阴极MFC中的发电。在反应器体积为9600 m²/m³的C-MFC中,含有刷电极的发电最大功率密度达到2400 mW/m²(基于阴极投影表面积归一化),或基于液体体积为73 W/m³,最大库仑效率(CE)为60%。通过阴极投影面积归一化后的这种功率密度是空气阴极系统迄今实现的最高值。功率增加是由于内阻从31Ω降至8Ω。刷电极(4200 m²/m³)也在B-MFC中进行了测试,B-MFC由一个实验室培养基瓶改装而成,该瓶有一个单侧臂,阴极夹在其末端。接种废水的B-MFC使用刷电极时产生的功率高达1430 mW/m²(2.3 W/m³,CE = 23%),而使用普通碳纸电极时为600 mW/m²。这些发现表明,具有高表面积和多孔结构的刷阳极可以产生高功率密度,因此具有使其成为扩大MFC系统规模的理想材料的特性。

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