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高级技术用于确定微量污染物的定量结构-活性关系和降解效率及其在水中的去除 - 综述。

Advanced technologies for the determination of quantitative structure-activity relationships and degradation efficiency of micropollutants and their removal in water - A review.

机构信息

Department of Biotechnology, Sathyabama Institute of Science and Technology, Jeppiaar Nagar, Chennai 600 095, Tamil Nadu, India.

PG and Research Department of Botany, Government Arts College (Autonomous), Salem 636007, Tamil Nadu, India.

出版信息

Sci Total Environ. 2023 Dec 15;904:166563. doi: 10.1016/j.scitotenv.2023.166563. Epub 2023 Aug 28.

Abstract

The growing concentrations of micropollutants in aquatic ecosystems are a global water quality issue. Understanding micropollutants varied chemical composition and potency is essential to solving this complex issue. Micropollutants management requires identifying contaminants to reduce, optimal reduction targets, and the best wastewater recycling locations. Management requires appropriate technological measures. Pharmaceuticals, antibiotics, hormones, and other micropollutants can enter the aquatic environment from point and diffuse sources, with wastewater treatment plants (WWTPs) distributing them in urban areas. Micropollutants like pharmaceuticals and hormones may not be removed by conventional WWTPs. Micropollutants affect the EU, especially in densely populated areas where surface water is consumed. This review examines several technological options that can be integrated into existing treatment methods to address this issue. In this work, oxidation, activated carbon, and their combinations as potential solutions, considering their efficacy and cost were evaluated. This study illuminates micropollutants origin and physico-chemical properties, which affect distribution, persistence, and environmental impacts. Understanding these factors helps us develop targeted micropollutant mitigation strategies to protect water quality. This review can inform policy and decision-making to reduce micropollutant impacts on aquatic ecosystems and human health.

摘要

水生生态系统中不断增加的微污染物浓度是一个全球性的水质问题。了解微污染物的不同化学组成和效力对于解决这一复杂问题至关重要。微污染物的管理需要确定要减少的污染物、最佳的减少目标以及最佳的废水再利用地点。管理需要采取适当的技术措施。药品、抗生素、激素和其他微污染物可以从点源和扩散源进入水生态环境,城市地区的废水处理厂(WWTP)会对其进行分布。像药品和激素这样的微污染物可能不会被常规的 WWTP 去除。微污染物会影响欧盟,尤其是在人口密集地区,这些地区的地表水会被消耗。本综述考察了几种可集成到现有处理方法中的技术选择方案,以解决这一问题。在这项工作中,评估了氧化、活性炭及其组合作为潜在解决方案的功效和成本。本研究阐明了影响分布、持久性和环境影响的微污染物的来源和物理化学性质。了解这些因素有助于我们制定有针对性的微污染物缓解策略,以保护水质。本综述可为政策和决策提供信息,以减少微污染物对水生态系统和人类健康的影响。

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