首页> 外文OA文献 >Removal of Sulfide and Production of Methane from Carbon Dioxide in Microbial Fuel Cells-Microbial Electrolysis Cell (MFCs-MEC) Coupled System
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Removal of Sulfide and Production of Methane from Carbon Dioxide in Microbial Fuel Cells-Microbial Electrolysis Cell (MFCs-MEC) Coupled System

机译:微生物燃料电池-微生物电解池(MFCs-MEC)耦合系统中二氧化碳的脱硫和甲烷生产

摘要

Removal of sulfide and production of methane from carbon dioxide in microbial electrolysis cells (MECs) at the applied voltage of 0.7 V was achieved using sulfide and organic compound as electron donors. The removal rate of sulfide was 72 % and the Faraday efficiency of methane formation was 57 % within 70 h of operation. Microbial fuel cell (MFCs) can be connected in series to supply power and drive the reaction in MECs. Removal of sulfide and production of methane from carbon dioxide in MFCs-MEC coupled system was achieved. The sulfide removal rates were 62.5, 60.4, and 57.7 %, respectively, in the three anode compartments. Methane accumulated at a rate of 0.354 mL h(-1) L-1 and the Faraday efficiency was 51 %. Microbial characterization revealed that the biocathode of MEC was dominated by relatives of Methanobacterium palustre, Methanobrevibacter arboriphilus, and Methanocorpusculum parvum. This technology has a potential for wastewater treatments and biofuel production from carbon dioxide.
机译:使用硫化物和有机化合物作为电子给体,在施加的0.7 V电压下,可在微生物电解池(MEC)中从二氧化碳中去除硫化物并从二氧化碳中生成甲烷。在运行70小时内,硫化物的去除率为72%,法拉第形成甲烷的法拉第效率为57%。微生物燃料电池(MFCs)可以串联连接以供电并驱动MEC中的反应。在MFCs-MEC耦合系统中,实现了二氧化碳中硫化物的去除和甲烷的生产。在三个阳极室中,硫化物的去除率分别为62.5、60.4和57.7%。甲烷以0.354 mL h(-1)L-1的速率累积,法拉第效率为51%。微生物鉴定表明,MEC的生物阴极主要由甲烷甲烷杆菌,树型甲烷短杆菌和小规模甲烷菌的亲属组成。该技术具有用于废水处理和二氧化碳生产生物燃料的潜力。

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