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Scaleup suitability of sulfonated polyether ether ketone membrane-based microbial fuel cell

机译:按比例增长的磺化聚醚醚的适用性酮微生物燃料电池膜基

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A sustainable clean energy production from oxidation of biodegradable materials was carried out in a microbial fuel cell (MFC) stack consisting of four MFC units. The stack was fabricated and tested for its scalability using a high engineering, low oxygen mass transfer membrane; namely, sulfonated poly ether ether ketone. Sodium acetate was used as the substrate and dairy waste inoculum was utilized as biocatalyst for power generation. Maximum current and power density generation produced in the MFC stack were 1033 mA m(-2) and 826 mW m(-2), respectively, with a columbic efficiency of 58%. Impedance spectroscopy demonstrated the internal resistance distribution in a single unit cell of the MFC stack and indicated a much lower resistance of 8.5 . Cyclic voltammetry revealed that the enrichment of culture and partial anodic biofilm mixture increased the electrochemical activity. Additionally, experiments were performed with dairy wastewater which produced a moderate current and power density of 672 mA m(-2) and 640 mW m(-2), respectively. The MFC stack system demonstrated the ability to treat real wastewater with the added benefit of harvesting electricity energy. (c) 2015 American Institute of Chemical Engineers Environ Prog, 35: 80-87, 2016
机译:一个可持续的清洁能源生产进行氧化生物降解材料在微生物燃料电池(MFC)堆栈四个MFC机组组成。制造和测试的可伸缩性使用高工程、低氧传质膜;酮。剂是利用和奶制品的浪费生物催化剂用于发电。和功率密度代生产的MFC堆栈是1033马米(2)和826 mW m (2),分别用58%的铌的效率。阻抗谱证明了内部阻力的分布在一个单元细胞MFC堆栈和表明低得多电阻的8.5。文化的浓缩和部分阳极生物膜增加了电化学混合活动。表现与乳制品废水产生温和的672毫安的电流和功率密度(2)和640 mW m(2),分别。堆栈系统证明治疗的能力实际废水的好处收获电力能源。化学工程师学会环境掠夺,35:80-87, 2016

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