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Long-term bio-power of ceramic microbial fuel cells in individual and stacked configurations

机译:个体和堆叠配置中陶瓷微生物燃料电池的长期生物动力

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In order to improve the potential of Microbial Fuel Cells (MFCs) as an applicable technology, the main challenge is to engineer practical systems for bioenergy production at larger scales and to test how the prototypes withstand the challenges occurring during the prolonged operation under constant feeding regime with real waste stream. This work presents the performance assessment of low-cost ceramic MFCs in the individual, stacked (modular) and modular cascade (3 modules) configurations during long term operation up to 19 months, utilising neat human urine as feedstock. During 1 year, the performance of the individual MFC units reached up to 1.56 mW (22.3 W/m(3)), exhibiting only 20% power loss on day 350 which was significantly smaller in comparison to conventional proton or cation exchange membranes. The stack module comprising 22 MFCs reached up to 21.4 mW (11.9 W/m(3)) showing power recovery to the initial output levels after 580 days, whereas the 3-module cascade reached up to 75 mW (13.9 W/m(3)) of power, showing 20% power loss on day 446. In terms of chemical oxygen demand (COD) removal, the 3-module cascade configuration achieved a cumulative reduction of >92%, which is higher than that observed in the single module (56%). (C) 2020 The Authors. Published by Elsevier B.V.
机译:为了改善微生物燃料电池(MFC)作为适用技术的潜力,主要挑战是在更大的尺度上为生物能源生产的工程师实用系统,并测试原型如何承受在恒定喂养方案下长时间运行期间发生的挑战用真正的废物流。这项工作介绍了在长期操作期间的个体,堆叠(模块化)和模块化级联(3个模块)配置中的低成本陶瓷MFC的​​性能评估,长期运行长达19个月,以纯净的人类尿剂为原料。在1年内,各个MFC单位的性能达到最高1.56兆瓦(22.3 W / m(3)),与常规质子或阳离子交换膜相比,在第350天仅表现出20%的功率损失。包含22MFC的堆叠模块最多可达21.4 MW(11.9W / m(3)),显示580天后初始输出水平的功率恢复,而3模块级联达到高达75 MW(13.9 W / m(3 ))的电力,在第446天显示20%的功率损失。就化学需氧量(COD)移除而言,3模块级联配置实现了累积减少> 92%,其高于单个模块中观察到的累积减少(56%)。 (c)2020作者。 elsevier b.v出版。

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