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Electricity and catholyte production from ceramic MFCs treating urine

机译:处理尿液的陶瓷MFC的​​电和阴极电解液生产

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摘要

The use of ceramics as low cost membrane materials for Microbial Fuel Cells (MFCs) has gained increasing interest, due to improved performance levels in terms of power and catholyte production. The catholyte production in ceramic MFCs can be attributed to a combination of water or hydrogen peroxide formation from the oxygen reduction reaction in the cathode, water diffusion and electroosmotic drag through the ion exchange membrane. This study aims to evaluate, for the first time, the effect of ceramic wall/membrane thickness, in terms of power, as well as catholyte production from MFCs using urine as a feedstock. Cylindrical MFCs were assembled with fine fire clay of different thicknesses (2.5, 5 and 10 mm) as structural and membrane materials. The power generated increased when the membrane thickness decreased, reaching 2.1 ± 0.19 mW per single MFC (2.5 mm), which was 50% higher than that from the MFCs with the thickest membrane (10 mm). The amount of catholyte collected also decreased with the wall thickness, whereas the pH increased. Evidence shows that the catholyte composition varies with the wall thickness of the ceramic membrane. The possibility of producing different quality of catholyte from urine opens a new field of study in water reuse and resource recovery for practical implementation.
机译:由于在功率和阴极电解液生产方面的性能水平提高,将陶瓷用作微生物燃料电池(MFC)的低成本膜材料已引起越来越多的关注。陶瓷MFC中阴极电解液的产生可归因于阴极中氧还原反应形成的水或过氧化氢,水的扩散和通过离子交换膜的电渗阻力的结合。这项研究旨在首次评估陶瓷壁/膜厚度对功率的影响,以及使用尿液作为原料的MFC生产阴极电解液的影响。圆柱形MFC是用不同厚度(2.5、5和10mm)的细火粘土组装而成的,作为结构材料和膜材料。当膜厚度减小时,产生的功率增加,每个单个MFC(2.5 mm)达到2.1±0.19 mW,这比膜最厚(10 mm)的MFC高50%。阴极液的收集量也随壁厚的增加而减少,而pH值则增加。有证据表明,阴极电解液的组成随陶瓷膜壁的厚度而变化。从尿液中产生不同质量的阴极电解液的可能性为实际应用开辟了水回用和资源回收的新研究领域。

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