首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Performance, kinetics behaviors and microbial community of internal circulation anaerobic reactor treating wastewater with high organic loading rate: Role of external hydraulic circulation
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Performance, kinetics behaviors and microbial community of internal circulation anaerobic reactor treating wastewater with high organic loading rate: Role of external hydraulic circulation

机译:内循环厌氧反应器处理高有机负荷废水的性能,动力学行为和微生物群落:外部水力循环的作用

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Performance of internal circulation anaerobic reactor (IC) treating wastewater at high organic loading rate (OLR) and role of external hydraulic circulation were evaluated. When the OLR was increased from 2.50 to 18.94 kgCOD/m(3)/d, COD removal decreased to 85% slightly and methane production increased to 4.49 L/L/d with the upflow velocity of 1.0 m/h resulted from the additional hydraulic circulation. Withdrawal of external hydraulic circulation led to decrease of COD removal to lower than 60% drastically and methane production by 81%. Accumulation of volatile fatty acids caused decline of pH to below 6.0 and the shift of substrate metabolic pathway to the hybrid fermentation. In addition, both maximum methane production rate and maximum substrate degradation rate obtained from mathematical models decreased significantly. Hydrogenotrophic methanogens including Methanobacterium and Methanocorpusculum predominated in the anaerobic sludge and the shift of microbial community was also observed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:评价了内部循环厌氧反应器(IC)在高有机负荷率(OLR)下处理废水的性能以及外部水力循环的作用。当OLR从2.50增至18.94 kgCOD / m(3)/ d时,COD去除率轻微降低至85%,甲烷生成量增加至4.49 L / L / d,上流速度为1.0 m / h。循环。外部液压循环的撤出导致COD去除率大幅降低至60%以下,甲烷生成量降低了81%。挥发性脂肪酸的积累导致pH值降至6.0以下,以及底物代谢途径向杂交发酵的转移。另外,从数学模型获得的最大甲烷产生速率和最大底物降解速率均显着降低。厌氧污泥中占主导地位的氢营养型产甲烷菌包括甲烷杆菌和甲烷菌,并且还观察到微生物群落的变化。 (C)2016 Elsevier Ltd.保留所有权利。

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