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通过控制膜变形来提高单室微生物燃料电池的性能。

Improved performance of single-chamber microbial fuel cells through control of membrane deformation.

机构信息

State Key Joint Laboratory of Environment Simulation and Pollution Control, Department of Environmental Science & Engineering, Tsinghua University, Beijing 100084 PR China.

出版信息

Biosens Bioelectron. 2010 Mar 15;25(7):1825-8. doi: 10.1016/j.bios.2009.11.018. Epub 2009 Nov 27.

Abstract

Cation (CEMs) and anion exchange membrane (AEMs) are commonly used in microbial fuel cells (MFCs) to enhance Coulombic efficiencies (CEs) by reducing the flux of oxygen through the cathode to bacteria on the anode. AEMs typically work better than CEMs, but in initial experiments we observed the opposite using a membrane electrode assembly MFC. The reason was identified to be membrane deformation, which resulted in water and gas trapped between the membrane and cathode. To correct this, stainless steel mesh was used to press the membrane flat against the cathode. With the steel mesh, AEM performance increased to 46+/-4 W/m(3) in a single cathode MFC, and 98+/-14 W/m(3) in a double-cathode MFC. These power densities were higher than those using a CEM of 32+/-2 W/m(3) (single cathode) and 63+/-6 W/m(3) (double cathode). Higher pH gradients across the membrane and salt precipitation on the cathode were responsible for the reduced performance of the CEM compared to the AEM. CEs reached over 90% for both membranes at >2A/m(2). These results demonstrate the importance of avoiding water accumulation in thin films between membranes and electrodes, and explain additional reasons for poorer performance of CEMs compared to AEMs.

摘要

阳离子(CEMs)和阴离子交换膜(AEMs)常用于微生物燃料电池(MFCs)中,通过减少氧气通过阴极向阳极细菌的通量来提高库仑效率(CEs)。AEMs 通常比 CEMs 效果更好,但在最初的实验中,我们使用膜电极组件 MFC 观察到相反的情况。原因被确定为膜变形,这导致水和气体被困在膜和阴极之间。为了解决这个问题,使用不锈钢网将膜压在阴极上使其平整。使用钢网后,AEM 在单阴极 MFC 中的性能提高到 46+/-4 W/m³,在双阴极 MFC 中的性能提高到 98+/-14 W/m³。这些功率密度高于使用 CEM 的 32+/-2 W/m³(单阴极)和 63+/-6 W/m³(双阴极)。与 AEM 相比,CEM 的性能较低,原因是膜内 pH 梯度较高和阴极上盐的沉淀。对于两种膜,CE 超过 90%时电流密度超过 2A/m²。这些结果表明,避免膜和电极之间的薄膜中积水非常重要,并解释了与 AEM 相比 CEM 性能较差的其他原因。

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