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Removal performance and microbial communities in a sequencing batch reactor treating hypersaline phenol-laden wastewater

机译:顺序批处理反应器处理高盐含酚废水的去除性能和微生物群落

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Hypersaline phenol-rich wastewater is hard to be treated by traditional biological systems. In this work, a sequencing batch reactor was used to remove phenol from hypersaline wastewater. The removal performance was evaluated in response to the variations of operating parameters and the microbial diversity was investigated by 454 pyrosequencing. The results showed that the bioreactor had high removal efficiency of phenol and was able to keep stable with the increase of initial phenol concentration. DO, pH, and salinity also affected the phenol removal rate. The most abundant bacterial group was phylum Proteobacteria in the two working conditions, and class Gammaproteobacteria as well as Alphaproteobacteria was predominant subgroup. The abundance of bacterial clusters was notably different along with the variation of operation conditions, resulting in changes of phenol degradation rates. The high removal efficiency of phenol suggested that the reactor might be promising in treating phenol-laden industrial wastewater in high-salt condition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:传统的生物系统难以处理富含盐的高盐化苯酚废水。在这项工作中,使用了一个顺序批处理反应器从高盐废水中去除苯酚。响应于操作参数的变化评估去除性能,并通过454焦磷酸测序研究微生物多样性。结果表明,该生物反应器对苯酚的去除效率高,并且能够随着苯酚初始浓度的增加而保持稳定。 DO,pH和盐度也影响苯酚的去除率。在这两种工作条件下,细菌群最多的是Proteobacteria,而γ-proteobacteria和Alphaproteobacteria是主要的亚组。随着操作条件的变化,细菌簇的丰度明显不同,从而导致苯酚降解率的变化。苯酚的高去除率表明该反应器在高盐条件下处理含苯酚的工业废水中具有广阔的前景。 (C)2016 Elsevier Ltd.保留所有权利。

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