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关于采用先进处理技术从水体系中去除四环素的综述。

A review on tetracycline removal from aqueous systems by advanced treatment techniques.

作者信息

Gopal Geetha, Alex Sruthi Ann, Chandrasekaran N, Mukherjee Amitava

机构信息

Centre for Nanobiotechnology, VIT Vellore 632014 Tamil Nadu India

Centre for Nano Science and Technology, Anna University Chennai India.

出版信息

RSC Adv. 2020 Jul 21;10(45):27081-27095. doi: 10.1039/d0ra04264a. eCollection 2020 Jul 15.

Abstract

Tetracycline (TC), a frequently used drug for human and veterinary therapeutics, is among the most common antibiotic residues found in nature. Lack of advanced treatment techniques in the wastewater treatment plants (WWTPs) to remove residual TC from domestic and hospital wastewater poses a serious environmental risk. It is important to have an insight into the different advanced treatment techniques for efficient removal of TC from the surface water and in the WWTPs. The aim of this review is to discuss the nature and occurrence of TC in surface water and to present an overview of the various advanced treatment techniques for TC removal. The advanced treatment techniques include advanced oxidation processes (photolysis, ozonation, and catalytic/UV light-based degradation), membrane filtration, reverse osmosis, and adsorption techniques. Adsorption and integrated oxidation treatment techniques are the most widely studied methods, and they are widely accepted because of less cost, reusability, and toxic-free nature. Further, the uses of various types of catalysts for photodegradation and various sorbents for adsorption of TC are also presented. Finally, the importance of green nanocomposite for environmental sustainability in TC removal is emphasized.

摘要

四环素(TC)是一种常用于人类和兽医治疗的药物,是自然界中最常见的抗生素残留之一。污水处理厂(WWTPs)缺乏先进的处理技术来去除生活污水和医院废水中的残留四环素,这带来了严重的环境风险。深入了解从地表水和污水处理厂中高效去除四环素的不同先进处理技术非常重要。本综述的目的是讨论四环素在地表水中的性质和存在情况,并概述各种去除四环素的先进处理技术。先进处理技术包括高级氧化工艺(光解、臭氧化和基于催化/紫外线光的降解)、膜过滤、反渗透和吸附技术。吸附和综合氧化处理技术是研究最广泛的方法,由于成本较低、可重复使用且无毒,它们被广泛接受。此外,还介绍了用于光降解的各种类型催化剂和用于吸附四环素的各种吸附剂。最后,强调了绿色纳米复合材料在去除四环素方面对环境可持续性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af56/9055545/c7af3f0023b8/d0ra04264a-p4.jpg

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