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Comprehensive Study on Ceramic Membranes for Low-Cost Microbial Fuel Cells

机译:低成本微生物燃料电池陶瓷膜综合研究

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Microbial fuel cells (MFCs) made with different types of ceramic membranes were investigated to find a low-cost alternative to commercially available proton exchange membranes. The MFCs operated with fresh human urine as the fuel. Pyrophyllite and earthenware produced the best performance to reach power densities of 6.93 and 6.85Wm(-3), respectively, whereas mullite and alumina achieved power densities of 4.98 and 2.60Wm(-3), respectively. The results indicate the dependence of bio-film growth and activity on the type of ceramic membrane applied. The most favourable conditions were created in earthenware MFCs. The performance of the ceramic membranes was related to their physical and chemical properties determined by environmental scanning electron microscopy and energy dispersive X-ray spectroscopy. The cost of mullite, earthenware, pyrophyllite and alumina was estimated to be 13.61, 4.14, 387.96 and 177.03GBPm(-2), respectively. The results indicate that earthenware and mullite are good substitutes for commercially available proton exchange membranes, which makes the MFC technology accessible in developing countries.
机译:采用不同类型的陶瓷膜制备的微生物燃料电池(MFC),以找到商业上可获得的质子交换膜的低成本替代品。 MFCS用新鲜的人类尿作为燃料进行操作。纤维素和陶器分别产生6.93和6.85WM(-3)的最佳性能,而莫来石和氧化铝分别达到4.98和2.60WM(-3)的功率密度。结果表明生物膜生长和活性对所施加的陶瓷膜类型的依赖性。在陶器MFCS中创建了最有利的条件。陶瓷膜的性能与通过环境扫描电子显微镜和能量分散X射线光谱测定的物理和化学性质有关。莫来石,陶器,纤维素和氧化铝的成本估计为13.61,4.14,387.96和177.03gbpm(-2)。结果表明,陶器和莫来石是商业上可获得的质子交换膜的替代品,这使得MFC技术可在发展中国家获得。

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