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Effect of the ceramic membrane properties on the microbial fuel cell power output and catholyte generation

机译:陶瓷膜性能对微生物燃料电池功率输出和阴极电解液生成的影响

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摘要

Ceramic membranes for MFCs offer a low cost alternative to the expensive ion exchange membranes, whilst promoting catholyte accumulation. However, their physicochemical properties need to be optimised, in order to increase the power output and the catholyte quality from MFCs. Two compositions of fine fire clay (FFC) cured under three firing cycles were manufactured, analysed and tested as ion-exchange and structural material for MFCs. The samples were characterised by scanning electron microscopy (SEM) and electrochemical impedance spectroscopy (EIS). The power and catholyte generated from the ceramic MFCs with different FFC types was also evaluated. The results show a direct correlation between the ohmic resistance, the MFC power generation and the water absorption of the ceramics, giving a maximum power of 1 mW from the MFC with the most absorptive FFC (16.37% water absorbance). A slightly more alkaline catholyte was synthesised from the MFCs with higher water absorption FFC.
机译:MFC的陶瓷膜是昂贵离子交换膜的低成本替代品,同时促进了阴极电解液的积累。但是,为了增加MFC的功率输出和阴极电解液质量,需要优化其理化特性。制造,分析和测试了在三个烧成循环下固化的两种细粉状粘土(FFC),作为MFC的离子交换和结构材料。样品通过扫描电子显微镜(SEM)和电化学阻抗谱(EIS)进行表征。还评估了具有不同FFC类型的陶瓷MFC产生的功率和阴极电解质。结果表明,欧姆电阻,MFC的发电量和陶瓷的吸水率之间具有直接的相关性,从具有最强吸收性FFC的MFC(吸水率为16.37%)得出最大功率为1 mW。由具有较高吸水FFC的MFC合成了碱性稍强的阴极电解液。

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