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使用碳点作为强效材料对新兴药物污染物进行净化处理。

Decontamination of emerging pharmaceutical pollutants using carbon-dots as robust materials.

作者信息

González-González Reyna Berenice, Sharma Ashutosh, Parra-Saldívar Roberto, Ramirez-Mendoza Ricardo A, Bilal Muhammad, Iqbal Hafiz M N

机构信息

Tecnologico de Monterrey, School of Engineering and Sciences, Monterrey 64849, Mexico.

Tecnologico de Monterrey, School of Engineering and Sciences, Centre of Bioengineering, Campus Queretaro, Av. Epigmenio González 500, Fracc, SanPablo, CP 76130 Queretaro, Mexico.

出版信息

J Hazard Mater. 2022 Feb 5;423(Pt B):127145. doi: 10.1016/j.jhazmat.2021.127145. Epub 2021 Sep 12.

Abstract

Environmental pollution is a critical issue that requires proper measures to maintain environmental health in a sustainable and effective manner. The growing persistence of several active pharmaceutical residues, such as antibiotics like tetracycline, and anti-inflammatory drugs like diclofenac in water matrices is considered an issue of global concern. Numerous sewage/drain waste lines from the domestic and pharmaceutical sector contain an array of toxic compounds, so-called "emerging pollutants" and possess adverse effects on entire living ecosystem and damage its biodiversity. Therefore, effective solution and preventive measures are urgently required to sustainably mitigate and/or remediate pharmaceutically active emerging pollutants from environmental matrices. In this context, herein, the entry pathways of the pharmaceutical waste into the environment are presented, through the entire lifecycle of a pharmaceutical product. There is no detailed review available on carbon-dots (CDs) as robust materials with multifunctional features that support sustainable mitigation of emerging pollutants from water matrices. Thus, CDs-based photocatalysts are emerging as an efficient alternative for decontamination by pharmaceutical pollutants. The addition of CDs on photocatalytic systems has an important role in their performance, mainly because of their up-conversion property, transfer photoinduced electron capacities, and efficient separation of electrons and holes. In this review, we analyze the strategies followed by different researchers to optimize the photodegradation of various pharmaceutical pollutants. In this manner, the effect of different parameters such as pH, the dosage of photocatalyst, amount of carbon dots, and initial pollutant concentration, among others are discussed. Finally, current challenges are presented from a pollution prevention perspective and from CDs-based photocatalytic remediation perspective, with the aim to suggest possible research directions.

摘要

环境污染是一个关键问题,需要采取适当措施以可持续且有效的方式维护环境健康。几种活性药物残留,如四环素等抗生素以及双氯芬酸等抗炎药物,在水体基质中的持久性不断增加,这被视为一个全球关注的问题。来自家庭和制药行业的众多污水/排水管道含有一系列有毒化合物,即所谓的“新兴污染物”,对整个生物生态系统具有不利影响,并损害其生物多样性。因此,迫切需要有效的解决方案和预防措施,以可持续地减轻和/或修复环境基质中的药物活性新兴污染物。在此背景下,本文介绍了药品废弃物进入环境的途径,贯穿药品的整个生命周期。目前尚无关于碳点(CDs)作为具有多功能特性的强大材料以支持从水体基质中可持续减轻新兴污染物的详细综述。因此,基于碳点的光催化剂正成为药物污染物净化的一种有效替代方案。在光催化体系中添加碳点对其性能具有重要作用,主要是由于其向上转换特性、转移光生电子的能力以及电子和空穴的有效分离。在本综述中,我们分析了不同研究人员为优化各种药物污染物的光降解所采用的策略。通过这种方式,讨论了不同参数的影响,如pH值、光催化剂用量、碳点量和初始污染物浓度等。最后,从污染预防角度和基于碳点的光催化修复角度提出了当前面临的挑战,旨在提出可能的研究方向。

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