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从废水到净水:通过吸附和高级氧化工艺(AOPs)去除水中的甲硝唑、环丙沙星和磺胺甲恶唑抗生素的最新进展。

From wastewater to clean water: Recent advances on the removal of metronidazole, ciprofloxacin, and sulfamethoxazole antibiotics from water through adsorption and advanced oxidation processes (AOPs).

机构信息

Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, Iran.

Chemical Engineering Department, Amirkabir University of Technology (AUT), Tehran, Iran.

出版信息

Environ Res. 2024 Jul 1;252(Pt 3):119029. doi: 10.1016/j.envres.2024.119029. Epub 2024 Apr 27.

Abstract

Antibiotics released into water sources pose significant risks to both human health and the environment. This comprehensive review meticulously examines the ecotoxicological impacts of three prevalent antibiotics-ciprofloxacin, metronidazole, and sulfamethoxazole-on the ecosystems. Within this framework, our primary focus revolves around the key remediation technologies: adsorption and advanced oxidation processes (AOPs). In this context, an array of adsorbents is explored, spanning diverse classes such as biomass-derived biosorbents, graphene-based adsorbents, MXene-based adsorbents, silica gels, carbon nanotubes, carbon-based adsorbents, metal-organic frameworks (MOFs), carbon nanofibers, biochar, metal oxides, and nanocomposites. On the flip side, the review meticulously examines the main AOPs widely employed in water treatment. This includes a thorough analysis of ozonation (O), the photo-Fenton process, UV/hydrogen peroxide (UV/HO), TiO photocatalysis, ozone/UV (O/UV), radiation-induced AOPs, and sonolysis. Furthermore, the review provides in-depth insights into equilibrium isotherm and kinetic models as well as prospects and challenges inherent in these cutting-edge processes. By doing so, this review aims to empower readers with a profound understanding, enabling them to determine research gaps and pioneer innovative treatment methodologies for water contaminated with antibiotics.

摘要

抗生素释放到水源中对人类健康和环境都构成了重大风险。本综述详细研究了三种常见抗生素(环丙沙星、甲硝唑和磺胺甲恶唑)对生态系统的生态毒性影响。在这个框架内,我们的主要关注点集中在关键的修复技术:吸附和高级氧化工艺(AOPs)。在这方面,我们探讨了一系列的吸附剂,涵盖了多种类别,如生物量衍生的生物吸附剂、基于石墨烯的吸附剂、基于 MXene 的吸附剂、硅胶、碳纳米管、基于碳的吸附剂、金属有机框架(MOFs)、碳纤维、生物炭、金属氧化物和纳米复合材料。另一方面,本综述还详细研究了在水处理中广泛应用的主要 AOPs。这包括对臭氧化(O)、光芬顿工艺、UV/过氧化氢(UV/HO)、TiO2 光催化、臭氧/UV(O/UV)、辐射诱导 AOPs 和超声降解的深入分析。此外,本综述还深入探讨了平衡等温线和动力学模型,以及这些前沿工艺所固有的前景和挑战。通过这样做,本综述旨在为读者提供深刻的理解,使他们能够确定研究空白,并为受抗生素污染的水开发创新的处理方法。

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