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Evaluation of an integrated continuous stirred microbial electrochemical reactor: Wastewater treatment, energy recovery and microbial community

机译:一体化连续搅拌微生物电化学反应器的评估:废水处理,能量回收和微生物群落

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A continuous stirred microbial electrochemical reactor (CSMER) was developed by integrating anaerobic digestion (AD) and microbial electrochemical system (MES). The system was capable of treating high strength artificial wastewater and simultaneously recovering electric and methane energy. Maximum power density of 583 +/- 9, 562 +/- 7, 533 +/- 10 and 572 +/- 6 mW m (2) were obtained by each cell in a four-independent circuit mode operation at an OLR of 12 kg COD m (3) d (1). COD removal and energy recovery efficiency were 87.1% and 32.1%, which were 1.6 and 2.5 times higher than that of a continuous stirred tank reactor (CSTR). Larger amount of Deltaproteobacteria (5.3%) and hydrogenotrophic methanogens (47%) can account for the better performance of CSMER, since syntrophic associations among them provided more degradation pathways compared to the CSTR. Results demonstrate the CSMER holds great promise for efficient wastewater treatment and energy recovery. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过将厌氧消化(AD)和微生物电化学系统(MES)集成在一起,开发了连续搅拌微生物电化学反应器(CSMER)。该系统能够处理高强度人工废水,并同时回收电能和甲烷能。每个电池在OLR为12的四独立电路模式下通过每个单元获得的最大功率密度为583 +/- 9、562 +/- 7、533 +/- 10和572 +/- 6 mW m(2)。千克COD m(3)d(1)。 COD去除率和能量回收效率分别为87.1%和32.1%,分别是连续搅拌釜反应器(CSTR)的1.6和2.5倍。与CSTR相比,大量的Deltaproteobacteria细菌(5.3%)和氢营养型产甲烷菌(47%)可以说明CSMER的更好性能,因为它们之间的同养关系提供了更多的降解途径。结果表明,CSMER在高效废水处理和能量回收方面具有广阔的前景。 (C)2015 Elsevier Ltd.保留所有权利。

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