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当前高分辨率质谱在环境科学中的应用。

Current use of high-resolution mass spectrometry in the environmental sciences.

机构信息

Research Institute for Pesticides and Water, University Jaume I, Castellón, Spain.

出版信息

Anal Bioanal Chem. 2012 May;403(5):1251-64. doi: 10.1007/s00216-012-5844-7. Epub 2012 Feb 25.

Abstract

During the last two decades, mass spectrometry (MS) has been increasingly used in the environmental sciences with the objective of investigating the presence of organic pollutants. MS has been widely coupled with chromatographic techniques, both gas chromatography (GC) and liquid chromatography (LC), because of their complementary nature when facing a broad range of organic pollutants of different polarity and volatility. A clear trend has been observed, from the very popular GC-MS with a single quadrupole mass analyser, to tandem mass spectrometry (MS-MS) and, more recently, high-resolution mass spectrometry (HRMS). For years GC has been coupled to HR magnetic sector instruments, mostly for dioxin analysis, although in the last ten years there has been growing interest in HRMS with time-of-flight (TOF) and Orbitrap mass analyzers, especially in LC-MS analysis. The increasing interest in the use of HRMS in the environmental sciences is because of its suitability for both targeted and untargeted analysis, owing to its sensitivity in full-scan acquisition mode and high mass accuracy. With the same instrument one can perform a variety of tasks: pre- and post-target analysis, retrospective analysis, discovery of metabolite and transformation products, and non-target analysis. All these functions are relevant to the environmental sciences, in which the analyst encounters thousands of different organic contaminants. Thus, wide-scope screening of environmental samples is one of the main applications of HRMS. This paper is a critical review of current use of HRMS in the environmental sciences. Needless to say, it is not the intention of the authors to summarise all contributions of HRMS in this field, as in classic descriptive reviews, but to give an overview of the main characteristics of HRMS, its strong potential in environmental mass spectrometry and the trends observed over the last few years. Most of the literature has been acquired since 2005, coinciding with the growth and popularity of HRMS in this field, with a few exceptions that deserve to be mentioned because of their relevance.

摘要

在过去的二十年中,质谱(MS)在环境科学中的应用越来越广泛,其目的是调查有机污染物的存在。由于它们在面对不同极性和挥发性的广泛有机污染物时具有互补性,因此 MS 已广泛与色谱技术(包括气相色谱(GC)和液相色谱(LC))相结合。已经观察到一个明显的趋势,从非常流行的具有单个四极杆质量分析仪的 GC-MS 到串联质谱(MS-MS),以及最近的高分辨率质谱(HRMS)。多年来,GC 一直与 HR 磁扇形仪器耦合,主要用于二恶英分析,尽管在过去十年中,人们对 HRMS 与飞行时间(TOF)和轨道阱质谱仪的兴趣日益浓厚,尤其是在 LC-MS 分析中。环境科学中对 HRMS 的使用越来越感兴趣,是因为它适用于靶向和非靶向分析,这要归功于其在全扫描采集模式下的灵敏度和高质量精度。使用相同的仪器可以执行多种任务:目标前和目标后分析、回溯分析、代谢物和转化产物的发现以及非目标分析。所有这些功能都与环境科学相关,在环境科学中,分析人员会遇到数千种不同的有机污染物。因此,环境样品的广泛筛选是 HRMS 的主要应用之一。本文是对 HRMS 在环境科学中的当前应用的批判性回顾。不用说,作者无意在经典描述性综述中总结 HRMS 在该领域的所有贡献,而是概述 HRMS 的主要特点、它在环境质谱中的强大潜力以及过去几年观察到的趋势。大部分文献是自 2005 年以来获得的,这与 HRMS 在该领域的增长和普及相吻合,也有一些例外,值得一提,因为它们具有相关性。

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