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Configuration Analysis of Stacked Microbial Fuel Cell in Power Enhancement and Its Application in Wastewater Treatment

机译:堆叠式微生物燃料电池动力增强结构分析及其在废水处理中的应用

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摘要

The present study examined the performance of stacked microbial fuel cell for higher power generation and also for treating brewery waste effluent. The stackable microbial fuel cells are connected in series, parallel and series-parallel using standard glucose media produces increased power density of 813, 1546.57 and 2418 , respectively, corresponding to 288 from single cell as control. Series-parallel setup arrangement with brewery effluent produces maximum power density of 1345 with 81% of COD removal efficiency within 72 h of operation. The series-parallel configuration system shows significant COD removal and maximum power density due to their better stability of redox potential in overall cells. The significant reduction of TDS, TSS was also observed in series-parallel connection over other stacking MFCs. The results of the present study highlight the importance of combining electrical circuit along with stacking in generating stable and high power from MFC for practical applications.
机译:本研究检查了堆叠式微生物燃料电池在更高发电量以及啤酒废水处理方面的性能。使用标准葡萄糖介质将可堆叠微生物燃料电池串联,并联和串联-并联连接,分别产生增加的功率密度813、1546.57和2418,对应于单个电池的288功率密度。啤酒废水的串并联设置可在运行72小时内产生1345的最大功率密度和81%的COD去除效率。串联-并联配置系统由于在整个电池中具有更好的氧化还原电势稳定性,因此具有显着的COD去除能力和最大功率密度。与其他堆叠式MFC相比,在串并联连接中还观察到TDS,TSS的显着降低。本研究的结果强调了在实际应用中将电路与堆叠相结合对于从MFC产生稳定且高功率的重要性。

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