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模拟阳光照射下抗生素的光解:通过高分辨率质谱鉴定光产物。

Photolysis of Antibiotics under Simulated Sunlight Irradiation: Identification of Photoproducts by High-Resolution Mass Spectrometry.

机构信息

Department of Physical Chemistry, Faculty of Marine and Environmental Sciences, CEI·MAR, University of Cadiz , Puerto Real, 11510, Spain.

出版信息

Environ Sci Technol. 2017 Mar 21;51(6):3148-3156. doi: 10.1021/acs.est.6b03038. Epub 2017 Feb 28.

Abstract

There is growing concern regarding the widespread use of antibiotics and their presence in the aqueous environment. Their removal in the water column is mediated by different types of degradation processes for which the mechanisms are still unclear. This research is focused on characterizing the photodegradation kinetics and pathways of two largely employed antibiotics families: sulfonamides (9 SDs) and fluoroquinolones (6 FQs). Degradation percentages and rates were measured in pure water exposed to simulated natural sunlight at a constant irradiance value (500 W m) during all the experiments, and the main photoproducts formed were characterized through accurate mass measurement using ultraperformance liquid chromatography-quadrupole-time-of-flight-mass spectrometry (UPLC-QToF-MS). Over 200 different phototransformation products were identified for SDs and FQs, 66% of them, to the best of our knowledge, have not been described before. Their sequential formation and disappearance over the course of the experiments reveals the existence of several pathways for the degradation of target antibiotics. Occurrence of new photoproducts derived from desulfonation and/or denitrification, as well as hydroxylation of photo-oxidized heterocyclic rings, have been identified during photodegradation of SDs, whereas a new pathway yielding oxidation of the benzene ring after the cleavage of the piperazine ring (e.g., CIP product with m/z 280) is described for FQs.

摘要

人们越来越关注抗生素的广泛使用及其在水环境中的存在。它们在水柱中的去除是由不同类型的降解过程介导的,其机制尚不清楚。本研究专注于表征两种广泛使用的抗生素家族(磺胺类和氟喹诺酮类)的光降解动力学和途径。在所有实验中,在恒定辐照度(500 W m)下,将纯水中的降解百分比和速率暴露在模拟自然光下进行测量,并通过使用超高效液相色谱-四极杆飞行时间质谱(UPLC-QToF-MS)进行精确质量测量来表征形成的主要光产物。已经鉴定出磺胺类和氟喹诺酮类的 200 多种不同的光转化产物,据我们所知,其中 66%以前没有描述过。它们在实验过程中的连续形成和消失揭示了目标抗生素降解的几种途径的存在。在磺胺类的光降解过程中,已经鉴定出源自脱磺化和/或脱氮以及光氧化杂环环的羟基化的新光产物,而对于氟喹诺酮类,则描述了一种新的途径,即在哌嗪环断裂后苯环的氧化(例如,m/z 280 的 CIP 产物)。

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