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结合目标分析与非目标分析以及被动采样对混合用途流域中的环境污染物进行监测。

Monitoring of Environmental Contaminants in Mixed-Use Watersheds Combining Targeted and Nontargeted Analysis with Passive Sampling.

作者信息

Renaud Justin B, Sabourin Lyne, Hoogstra Shawn, Helm Paul, Lapen David R, Sumarah Mark W

机构信息

London Research and Development Centre, Agriculture and Agri-Food Canada, London, Ontario, Canada.

Environmental Monitoring and Reporting Branch, Ontario Ministry of the Environment, Conservation and Parks, Toronto, Ontario, Canada.

出版信息

Environ Toxicol Chem. 2022 May;41(5):1131-1143. doi: 10.1002/etc.5192. Epub 2021 Sep 27.

Abstract

Understanding the environmental fate, transport, and occurrence of pesticides and pharmaceuticals in aquatic environments is of utmost concern to regulators. Traditionally, monitoring of environmental contaminants in surface water has consisted of liquid chromatography-tandem mass spectrometry analyses for a set of targeted compounds in discrete samples. These targeted approaches are limited by the fact that they only provide information on compounds within a target list present at the time and location of sampling. To address these limitations, there has been considerable interest in suspect screening and nontargeted analysis (NTA), which allow for the detection of all ionizable compounds in the sample with the added benefit of data archiving for retrospective mining. Even though NTA can detect a large number of contaminants, discrete samples only provide a snapshot perspective of the chemical disposition of an aquatic environment at the time of sampling, potentially missing episodic events. We evaluated two types of passive chemical samplers for nontargeted analysis in mixed-use watersheds. Nontargeted data were processed using MS-DIAL to screen against our in-house library and public databases of more than 1300 compounds. The data showed that polar organic chemicals integrative samplers (POCIS) were able to capture the largest number of analytes with better reproducibility than organic compound-diffusive gradients in thin film (o-DGT), resulting from the greater amount of binding sorbent. We also showed that NTA combined with passive sampling gives a more representative picture of the contaminants present at a given site and enhances the ability to identify the nature of point and nonpoint pollution sources and ecotoxicological impacts. Environ Toxicol Chem 2022;41:1131-1143. © 2021 Her Majesty the Queen in Right of Canada Environmental Toxicology and Chemistry © 2021 SETAC. Reproduced with the permission of the Minister of Agriculture and Agri-Food Canada.

摘要

了解农药和药物在水生环境中的环境归宿、迁移和存在情况是监管机构最为关注的问题。传统上,地表水环境污染物监测包括对离散样品中一组目标化合物进行液相色谱 - 串联质谱分析。这些目标分析方法存在局限性,因为它们仅提供有关采样时和采样地点目标列表中化合物的信息。为解决这些局限性,人们对可疑筛查和非目标分析(NTA)产生了浓厚兴趣,这种方法能够检测样品中所有可电离化合物,还具有数据存档以便回顾性挖掘的额外优势。尽管NTA可以检测大量污染物,但离散样品仅提供采样时水生环境化学状况的快照视角,可能会遗漏偶发事件。我们评估了两种用于混合用途流域非目标分析的被动化学采样器。使用MS-DIAL对非目标数据进行处理,以对照我们拥有1300多种化合物的内部库和公共数据库进行筛查。数据表明,极性有机化学物质综合采样器(POCIS)能够捕获最多的分析物,并且比薄膜中的有机化合物扩散梯度(o-DGT)具有更好的重现性,这是由于其结合吸附剂的量更大。我们还表明,NTA与被动采样相结合能够更全面地反映给定地点存在的污染物情况,并增强识别点源和非点源污染的性质以及生态毒理学影响的能力。《环境毒理学与化学》2022年;41卷:1131 - 1143页。© 2021年加拿大女王陛下版权所有 环境毒理学与化学 © 2021年SETAC。经加拿大农业和农业食品部部长许可转载。

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