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Cascade degradation of organic matters in brewery wastewater using a continuous stirred microbial electrochemical reactor and analysis of microbial communities

机译:连续搅拌微生物电化学反应器级联降解啤酒废水中的有机物并分析微生物群落

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摘要

A continuous stirred microbial electrochemical reactor (CSMER), comprising of a complete mixing zone (CMZ) and microbial electrochemical zone (MEZ), was used for brewery wastewater treatment. The system realized 75.4 ± 5.7% of TCOD and 64.9 ± 4.9% of TSS when fed with brewery wastewater concomitantly achieving an average maximum power density of 304 ± 31 m W m−2. Cascade utilization of organic matters made the CSMER remove a wider range of substrates compared with a continuous stirred tank reactor (CSTR), in which process 79.1 ± 5.6% of soluble protein and 86.6 ± 2.2% of soluble carbohydrates were degraded by anaerobic digestion in the CMZ and short-chain volatile fatty acids were further decomposed and generated current in the MEZ. Co-existence of fermentative bacteria (Clostridium and Bacteroides, 19.7% and 5.0%), acetogenic bacteria (Syntrophobacter, 20.8%), methanogenic archaea (Methanosaeta and Methanobacterium, 40.3% and 38.4%) and exoelectrogens (Geobacter, 12.4%) as well as a clear spatial distribution and syntrophic interaction among them contributed to the cascade degradation process in CSMER. The CSMER shows great promise for practical wastewater treatment application due to high pre-hydrolysis and acidification rate, high energy recovery and low capital cost.
机译:连续搅拌的微生物电化学反应器(CSMER),由完全混合区(CMZ)和微生物电化学区(MEZ)组成,用于啤酒废水的处理。当与啤酒废水一起使用时,该系统实现了75.4%±5.7%的TCOD和64.9%±4.9%的TSS,同时实现了304±31 m W m -2 的平均最大功率密度。与连续搅拌釜反应器(CSTR)相比,级联利用有机物使CSMER去除了更大范围的底物,在该工艺中,厌氧消化过程中79.1%±5.6%的可溶性蛋白质和86.6%±2.2%的可溶性碳水化合物被降解。 CMZ和短链挥发性脂肪酸进一步分解,并在MEZ中产生电流。发酵细菌(Clostridium和Bacteroides,分别为19.7%和5.0%),产乙酸细菌(Syntrophobacter,20.8%),产甲烷古菌(Methanosaeta和Methanobacterium,分别为40.3%和38.4%)和外生电子(地细菌,共12.4%)并存它们之间清晰的空间分布和同养作用相互作用促进了CSMER的级联降解过程。由于高的预水解和酸化率,高的能量回收率和低的投资成本,CSMER在废水处理中的实际应用前景广阔。

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