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各种用于去除新兴微污染物磺胺甲恶唑的策略:系统评价。

Various strategies applied for the removal of emerging micropollutant sulfamethazine: a systematic review.

机构信息

Department of Biochemistry, School of Applied Sciences, REVA University, Bangalore, 560064, India.

Division of Biotechnology, Jeonbuk National University, Iksan, 54596, Republic of Korea.

出版信息

Environ Sci Pollut Res Int. 2023 Jun;30(28):71599-71613. doi: 10.1007/s11356-021-14259-w. Epub 2021 May 4.

Abstract

Pharmaceutical active drug(s) especially sulfamethazine (SMZ) is considered as one of the major emerging microcontaminants due its long-term existence in the environmental system and that can influence on the developmental of antibacterial resistance genes. Because of this region it has a great concern in the aquatic system. Moreover, the vast utilization of SMZ, excretion of undigested portion by animals and also through dumping or mishandling, SMZ is frequently detected in various samples (including water) of different places and its surroundings. Additionally, reports shown it has toxic effect against microalgae and mice. Thus, that can lead to several investigators, focusing on removal of SMZ alone or in combination of other drugs in wastewater treatment plants (WWTPs) either by abiotic and/or biotic treatment methods. The present review provides an overview of the toxic effect of SMZ and SMZ degradation/removal in abiotic and biotic processes. Finally, reveals the need of further implication of integrated treatments (including engineered biological mediators) to understand ideal biological approaches for the mineralization of SMZ.

摘要

药物活性成分(尤其是磺胺甲恶唑 [SMZ])被认为是主要的新兴微污染物之一,因为它在环境系统中存在时间长,并且会影响抗菌耐药基因的产生。由于这一区域,它在水生系统中受到极大关注。此外,由于 SMZ 的广泛使用、动物未消化部分的排泄以及倾倒或处理不当,SMZ 经常在不同地方和其周围环境的各种样本(包括水)中被检测到。此外,有报道表明它对微藻和老鼠具有毒性作用。因此,这促使许多研究人员专注于通过非生物和/或生物处理方法在废水处理厂(WWTP)中单独去除 SMZ 或与其他药物联合去除 SMZ。本综述概述了 SMZ 的毒性作用以及在非生物和生物过程中 SMZ 的降解/去除。最后,揭示了需要进一步采用综合处理方法(包括工程化生物介质),以了解用于 SMZ 矿化的理想生物方法。

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