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首页> 外文期刊>Journal of Environmental Science and Health >Characterization of the COD removal, electricity generation, and bacterial communities in microbial fuel cells treating molasses wastewater
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Characterization of the COD removal, electricity generation, and bacterial communities in microbial fuel cells treating molasses wastewater

机译:表征处理糖蜜废水的微生物燃料电池中COD去除,发电和细菌群落的特征

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摘要

The chemical oxygen demand (COD) removal, electricity generation, and microbial communities were compared in 3 types of microbial fuel cells (MFCs) treating molasses wastewater. Single-chamber MFCs without and with a proton exchange membrane (PEM), and double-chamber MFC were constructed. A total of 10,000mg L-1 COD of molasses wastewater was continuously fed. The COD removal, electricity generation, and microbial communities in the two types of single-chamber MFCs were similar, indicating that the PEM did not enhance the reactor performance. The COD removal in the single-chamber MFCs (89-90%) was higher than that in the double-chamber MFC (50%). However, electricity generation in the double-chamber MFC was higher than that in the single-chamber MFCs. The current density (80mA m(-2)) and power density (17mW m(-2)) in the double-chamber MFC were 1.4- and 2.2-times higher than those in the single-chamber MFCs, respectively. The bacterial community structures in single- and double-chamber MFCs were also distinguishable. The amount of Proteobacteria in the double-chamber MFC was 2-3times higher than those in the single-chamber MFCs. For the archaeal community, Methanothrix (96.4%) was remarkably dominant in the single-chamber MFCs, but Methanobacterium (35.1%), Methanosarcina (28.3%), and Methanothrix (16.2%) were abundant in the double-chamber MFC.
机译:在处理糖蜜废水的3种微生物燃料电池(MFCs)中,比较了化学需氧量(COD)的去除,发电和微生物群落。构造了不带质子交换膜(PEM)和带质子交换膜(PEM)的单室MFC,以及双室MFC。连续进料了10,000mg L-1 COD的糖蜜废水。两种类型的单室MFC中的COD去除,发电和微生物群落相似,表明PEM并未提高反应堆性能。单腔MFC的COD去除率(89-90%)高于双腔MFC的COD去除率(50%)。但是,双室MFC的发电量高于单室MFC的发电量。双室MFC中的电流密度(80mA m(-2))和功率密度(17mW m(-2))分别比单室MFC高1.4倍和2.2倍。单室和双室MFCs中的细菌群落结构也可以区分。双室MFC中的细菌数量比单室MFC中的高2-3倍。对于古细菌群落,单腔MFCs中甲氨蝶呤(96.4%)显着占优势,但双腔MFC中甲烷菌(35.1%),甲烷菌(28.3%)和甲烷菌(16.2%)丰富。

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