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首页> 外文期刊>Environmental Progress & Sustainable Energy >Effects of Influent Organic Loading Rates and Electrode Locations on the Electrogenesis Capacity of Constructed Wetland-Microbial Fuel Cell Systems
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Effects of Influent Organic Loading Rates and Electrode Locations on the Electrogenesis Capacity of Constructed Wetland-Microbial Fuel Cell Systems

机译:有机加载率和入渗的影响产电电极位置构建Wetland-Microbial燃料的能力电池系统

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摘要

Three novel constructed wetland-microbial fuel cells (CW-MFCs), based on electrode location, were developed for wastewater treatment and sustainable electricity production by embedding a MFC into a CW system. In the three CW-MFCs, electrodes were placed in different locations, including bottom anode-rhizosphere cathode CW-MFC (BA-RC-CW-MFC), rhizosphere anode-air cathode CW-MFC (RA-AC-CW-MFC), and bottom anode-air cathode CW-MFC (BA-AC-CW-MFC), to investigate the combined effects of organic loading rates (OLRs) and reactor configurations on the electrogenesis capacity of the hybrid system. All the systems operated continuously to treat five types of synthetic wastewater with increasing OLRs: 9.2, 18.4, 27.6, 55.2, and 92.0 g chemical oxygen demand (COD) m(-2) d(-1). The BA-RC-CW-MFC failed to produce electricity at any OLR, whereas the maximum power densities of 0.79 +/- 0.01 and 10.77 +/- 0.52 mW m(-2) were achieved in the RA-AC-CW-MFC with 18.4 g COD m(-2) d(-1) influent OLR and in the BA-AC-CW-MFC with 27.6 g COD m(-2) d(-1) influent OLR, respectively. The coulombic efficiencies of the RA-AC-CW-MFC and BA-AC-CW-MFC decreased gradually with the increase in influent OLRs. (C) 2016 American Institute of Chemical Engineers Environ Prog, 36: 435-441, 2017
机译:三个小说构造wetland-microbial燃料细胞(CW-MFCs),根据电极的位置,为污水处理和开发吗通过嵌入一个可持续的电力生产MFC连续波系统。电极放置在不同的位置,包括底部anode-rhizosphere阴极CW-MFC(BA-RC-CW-MFC),根际anode-air阴极anode-air CW-MFC (RA-AC-CW-MFC)和底部阴极CW-MFC (BA-AC-CW-MFC),调查有机的加载率(olr)和反应堆配置产电混合动力系统的能力。连续治疗5个类型的操作合成废水与olr增加:9.2,18.4, 27.6, 55.2,和92.0 g化学氧气需求(COD) m d(2)(1)。在任何OLR发电,而最大功率密度0.79 + / - 0.0110.77 + / - 0.52 mW m(2)中实现RA-AC-CW-MFC 18.4 g鳕鱼m (2) d(1)影响OLR和BA-AC-CW-MFC 27.6 g鳕鱼m (2)d(1)入渗OLR,分别。RA-AC-CW-MFC和BA-AC-CW-MFC的效率与入渗的增加逐渐下降olr。工程师环境掠夺,36岁:435 - 441年,2017年

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