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Impact of industrial wastewater on the dynamics of antibiotic resistance genes in a full-scale urban wastewater treatment plant

机译:工业废水对大规模城市污水处理厂抗生素抗性基因动力学的影响

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Urban Wastewater Treatment Plants (UWTPs) treating mixed urban sewage and industrial wastewater are among the major hotspots for the spread of Antibiotic Resistance Genes (ARGs) into the environment. This study addresses the impact of the wastewater origin on ARG dynamics in a full-scale UWTP (15,000 Population Equivalent, PE) by operating the plant with and without industrial wastewater. Composite samples (4 L) from different treatment points were characterized for their chemical composition, bacterial abundance and for the abundance of four resistance genes against tetracycline, sulfonamides, erythromycin, and quinolones (tetA, sul2, ermB, and qnrS), and of the class 1 integrons (intI1). Although the chemical composition of the outflow significantly differed when the plant operated with or without industrial wastewater, the system efficiency in the removal of bacterial cells, ARGs, and intI1 was constant. The final disinfection by peracetic acid (PAA) did not affect the removal of ARGs, independently of the wastewater origin and the chemical characteristics of the inflows. Our results demonstrated that a well-functioning small size UWTP could treat a significant amount of industrial wastewater mixed in the urban sewagewithout affecting the overall ARGs and class 1 integrons released into the environment. (C) 2018 Elsevier B.V. All rights reserved.
机译:用于处理城市污水和工业废水的城市污水处理厂(UWTP)是将抗生素抗性基因(ARG)传播到环境中的主要热点。这项研究通过在有或没有工业废水的情况下运行工厂来解决污水来源对全规模污水处理厂(15,000人口当量,PE)中ARG动态的影响。对来自不同处理点的复合样品(4 L)的化学成分,细菌丰度以及针对四环素,磺酰胺,红霉素和喹诺酮(tetA,sul2,ermB和qnrS)的四个抗性基因的丰度进行了表征1类整数(intI1)。尽管在有或没有工业废水的情况下运行工厂时,流出物的化学成分明显不同,但去除细菌细胞,ARG和intI1的系统效率是恒定的。最终的过乙酸消毒(PAA)不会影响ARG的去除,而与废水的来源和流入的化学特性无关。我们的研究结果表明,运行良好的小型UWTP可以处理城市污水中混入的大量工业废水,而不会影响释放到环境中的整体ARG和1类整形体。 (C)2018 Elsevier B.V.保留所有权利。

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