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药物活性化合物的羟化转化产物:在污水处理厂中使用的工艺产生及其环境监测。

Hydroxylated transformation products of pharmaceutical active compounds: Generation from processes used in wastewater treatment plants and its environmental monitoring.

机构信息

Centro de Investigación y Asistencia en Tecnología y Diseño Del Estado de Jalisco A.C., Sede Noreste, Vía de La Innovación 404, Autopista Monterrey-Aeropuerto Km 10, Parque PIIT, Apodaca, Nuevo León, C.P. 66628, Mexico.

出版信息

Chemosphere. 2024 Feb;349:140753. doi: 10.1016/j.chemosphere.2023.140753. Epub 2023 Nov 23.

Abstract

Pharmaceutical active compounds (PhACs) are organic pollutants detected in wastewater and aquatic environments worldwide in concentrations ranging from ng L to μg L. Wastewater effluents containing PhACs residues is discharged in municipal sewage and, subsequently collected in municipal wastewater treatment plants (WWTPs) where are not entirely removed. Thus, PhACs and its transformation products (TPs) are discharged into water bodies. In the current work, the transformation of PhACs under treatments used in municipal WWTPs such as biological, photolysis, chlorination, and ozonation processes was reviewed. Data set of the major transformation pathways were obtained of studies that performed the PhACs removal and TPs monitoring during batch-scale experiments using gas and liquid chromatography coupled with tandem mass spectrometry (GC/LC-MS/MS). Several transformation pathways as dealkylation, hydroxylation, oxidation, acetylation, aromatic ring opening, chlorination, dehalogenation, photo-substitution, and ozone attack reactions were identified during the transformation of PhACs. Especially, hydroxylation reaction was identified as transformation pathway in all the processes. During the elucidation of hydroxylated TPs several isobaric compounds as monohydroxylated and dihydroxylated were identified. However, hydroxylated TPs monitoring in wastewater and aquatic environments is a topic scarcely studied due to that has no environmental significance, lack of available analytic standars of hydroxylated TPs and lack of analytic methods for their identification. Thus, screening strategy for environmental monitoring of hydroxylated TPs was proposed through target and suspect screening using GC/LC-MS/MS systems. In the next years, more studies on the hydroxylated TPs monitoring are necessary for its detection in WWTPs effluents as well as studies on their environmental effects in aquatic environments.

摘要

药物活性化合物(PhACs)是在全球范围内的废水和水生环境中检测到的有机污染物,浓度范围从 ng/L 到 μg/L。含有 PhACs 残留的废水排放到城市污水中,随后收集在城市污水处理厂(WWTP)中,但并未完全去除。因此,PhACs 及其转化产物(TPs)被排放到水体中。在当前的工作中,审查了在城市 WWTP 中使用的处理方法(如生物、光解、氯化和臭氧化过程)下 PhACs 的转化。通过使用气相和液相色谱与串联质谱(GC/LC-MS/MS)在批量实验中进行 PhACs 去除和 TPs 监测的研究,获得了主要转化途径的数据。在 PhACs 的转化过程中,鉴定了几种转化途径,如脱烷基化、羟化、氧化、乙酰化、芳环开环、氯化、脱卤化、光取代和臭氧攻击反应。特别是,在所有过程中都鉴定出了羟化反应作为转化途径。在阐明羟化 TPs 的过程中,鉴定了几种等质量化合物,如单羟化和二羟化。然而,由于缺乏羟化 TPs 的环境意义、缺乏可用的羟化 TPs 分析标准以及缺乏用于鉴定它们的分析方法,因此在废水和水生环境中对羟化 TPs 进行监测是一个研究甚少的课题。因此,提出了通过使用 GC/LC-MS/MS 系统进行目标和可疑筛选的策略,用于环境监测羟化 TPs。在未来几年,需要对 WWTP 流出物中羟化 TPs 的检测以及对其在水生环境中的环境影响进行更多的研究。

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