水中的药物:新出现的问题和创新的补救解决方案

IF 1.1 Q3 CHEMISTRY, MULTIDISCIPLINARY
Smriti Ojha, Shivendra Mani Tripathi, Pratik Kumar Vishwakarma, Sudhanshu Mishra
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引用次数: 0

摘要

摘要:药物污染是由药物活性成分(api)和其他相关化合物排放到水中而引起的,由于其对生态系统和人类健康的潜在不利影响而日益受到关注。这篇综述文章旨在研究药物污染的许多方面,并强调其修复的最新进展。药物的影响,药物污染的来源和途径,以及检测和评估其毒性的困难,已包括在本手稿中。目前,人们采用了各种各样的修复策略来减轻水中的药物污染。传统的废水处理技术,包括活性污泥处理和膜过滤,可以有效地去除一部分药物化合物。然而,臭氧化和光催化等高级氧化工艺在增强难降解原料药的降解方面已经显示出有希望的结果。基于纳米技术的方法,如利用纳米颗粒进行吸附和降解,以及利用微生物降解、酶促过程和植物修复的生物修复方法,为有效和可持续的修复提供了潜在的未来方向。本文综述了药物污染物的研究进展、现状及潜在的研究方向,并展望了未来的发展前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pharmaceuticals in the Water: Emerging Concerns and Innovative Remediation Solutions
Abstract: Pharmaceutical contamination, resulting from the discharge of active pharmaceutical ingredients (APIs) and other related compounds into the water, has become a growing concern due to its potential adverse effects on ecosystems and human health. This review article aims to examine the many facets of pharmaceutical contamination and highlight the most recent developments in its remediation. The effects of pharmaceuticals, sources, and pathways of pharmaceutical contamination, as well as the difficulties in detecting and evaluating its toxicities, have been included in the present manuscript. Nowadays various remediation strategies are employed to mitigate pharmaceutical contamination in water. Conventional wastewater treatment techniques, including activated sludge processes and membrane filtration, are effective in removing a portion of the pharmaceutical compounds. However, advanced oxidation processes such as ozonation and photocatalysis have shown promising results in enhancing the degradation of recalcitrant APIs. Nanotechnology-based approaches, such as the use of nanoparticles for adsorption and degradation, and bioremediation methods utilizing microbial degradation, enzymatic processes, and phytoremediation, offer potential future directions for efficient and sustainable remediation. This review describes the most recent developments, current status, and potential research directions with the future prospects of pharmaceutical pollutants.
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来源期刊
Current Green Chemistry
Current Green Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
4.30
自引率
13.60%
发文量
6
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