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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Characterization of methane production and microbial community shifts during waste activated sludge degradation in microbial electrolysis cells
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Characterization of methane production and microbial community shifts during waste activated sludge degradation in microbial electrolysis cells

机译:微生物电解池中废物活化污泥降解过程中甲烷产生和微生物群落转移的特征

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摘要

Microbial electrolysis cell (MECs) were investigated as a promising technology to manage waste activated sludge (WAS) reduction and bio-methane generation. The effect of WAS concentration on the MECs performance was discussed. At the optimal concentration of 15 g COD/L, maximum methane yield of MECs fed with alkaline pretreated WAS (A-WAS) were achieved with the value of 77.13 +/- 2.52 L CH4/kg-COD on Day 3, which had been improved by 1.5-fold compared with MECs fed with raw WAS (R-WAS), while that was negligible in open circuit controls. Efficient sludge reduction was also obtained in terms of TCOD, total protein, TSS and VSS removal. Pyrosequencing revealed the dominance of exoelectrogen Geobacter and hydrogen-producing bacteria Petrimonas in MECs fed with WAS. Methanocorpusculum with the capacity of methane generation using CO2 and H-2 also showed overwhelming dominance (96.01%). The large proportions of Petrimonas and Methanocorpusculum indicated the occurrence of hydrogenotrophic methanogenesis in our methane-producing MECs. (C) 2014 Elsevier Ltd. All rights reserved.
机译:微生物电解池(MEC)作为一种有前途的技术进行了研究,以管理废物活性污泥(WAS)的减少和生物甲烷的产生。讨论了WAS浓度对MECs性能的影响。在15 g COD / L的最佳浓度下,用碱预处理的WAS(A-WAS)进料的MEC的最大甲烷收率达到了第3天的77.13 +/- 2.52 L CH4 / kg-COD值。与使用原始WAS(R-WAS)喂食的MEC相比,它提高了1.5倍,而在开路控制中却可以忽略不计。在TCOD,总蛋白,TSS和VSS去除方面,还可以有效减少污泥。焦磷酸测序揭示了外源性地球细菌和产氢细菌Petrimonas在用WAS喂养的MEC中的优势。具有CO2和H-2生成甲烷能力的甲烷体也显示出压倒性优势(96.01%)。 Petrimonas和Methanocorpusculum的比例很高,表明在我们的甲烷生产MEC中发生了氢营养型甲烷生成。 (C)2014 Elsevier Ltd.保留所有权利。

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