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A viable electrode material for use in microbial fuel cells for tropical regions

机译:用于热带地区微生物燃料电池的可行电极材料

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摘要

Electrode materials are critical for microbial fuel cells (MFC) since they influence the construction and operational costs. This study introduces a simple and efficient electrode material in the form of palm kernel shell activated carbon (AC) obtained in tropical regions. The novel introduction of this material is also targeted at introducing an inexpensive and durable electrode material, which can be produced in rural communities to improve the viability of MFCs. The maximum voltage and power density obtained (under 1000 load) using an H-shaped MFC with AC as both anode and cathode electrode material was 0.66 V and 1.74 W/m(3), respectively. The power generated by AC was as high as 86% of the value obtained with the extensively used carbon paper. Scanning electron microscopy and Denaturing Gradient Gel Electrophoresis (DGGE) analysis of AC anode biofilms confirmed that electrogenic bacteria were present on the electrode surface for substrate oxidation and the formation of nanowires.
机译:电极材料对于微生物燃料电池(MFC)至关重要,因为它们会影响构造和运营成本。这项研究介绍了一种简单有效的电极材料,其形式为在热带地区获得的棕榈仁壳活性炭(AC)。这种材料的新颖引入还旨在引入一种廉价耐用的电极材料,该材料可在农村社区生产以提高MFC的生存能力。使用带有交流电作为阳极和阴极材料的H型MFC获得的最大电压和功率密度(在1000负载下)分别为0.66 V和1.74 W / m(3)。 AC产生的功率高达广泛使用的复写纸所获得的功率的86%。 AC阳极生物膜的扫描电子显微镜和变性梯度凝胶电泳(DGGE)分析证实,电极表面上存在用于基质氧化和纳米线形成的电细菌。

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