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采用色谱-高分辨率质谱联用法定量分析氯化石蜡 - 第A部分:气相色谱和电离源参数的影响

Quantification of chlorinated paraffins by chromatography coupled to high-resolution mass spectrometry - Part A: Influence of gas chromatography and ionisation source parameters.

作者信息

Amoura Cherine, Larvor Frédéric, Marchand Philippe, Le Bizec Bruno, Cariou Ronan, Bichon Emmanuelle

机构信息

Oniris, INRAE, LABERCA, F-44300, Nantes, France.

Oniris, INRAE, LABERCA, F-44300, Nantes, France.

出版信息

Chemosphere. 2024 Mar;352:141400. doi: 10.1016/j.chemosphere.2024.141400. Epub 2024 Feb 8.

Abstract

The analysis of chlorinated paraffins (CPs) has become a major analytical challenge. GC-ECNI-HRMS coupling is often used to analyse and quantify them. However, the influence of certain GC and ECNI parameters on the responses of polychlorinated n-alkanes (PCAs), the dominant components of CPs, has hardly been studied. In this paper, we investigated not only the influence of GC column characteristics, but also oven, GC inlet and source temperatures for simultaneous analysis of PCAs with chain-length ranging from 10 up to 20 carbon atoms (PCAs-C). Particular attention was paid to the absolute response and PCA homologue group pattern obtained for a CP technical mixture. The optimum conditions for a wide homologue group determination were GC inlet, final gradient and ion source temperatures set at 220-240 °C, 340 °C and 200 °C. At the same time, a higher response was obtained with the Optima 5HT column compared to Optima 1 column, and with a length and film thickness of 12.5 m and 0.25 μm, respectively. The homologue group pattern of the technical mixture studied was significantly modified as a function of the source and GC inlet temperatures, film thickness and composition of the stationary phase. Here we recommend conditions that will improve the overall PCA pattern, in order to better characterise their occurrence in future environmental monitoring and exposure assessment.

摘要

氯化石蜡(CPs)的分析已成为一项重大的分析挑战。气相色谱-电子捕获负离子高分辨质谱联用(GC-ECNI-HRMS)常用于对其进行分析和定量。然而,某些气相色谱和电子捕获负离子(ECNI)参数对多氯化正构烷烃(PCAs)(CPs的主要成分)响应的影响几乎未得到研究。在本文中,我们不仅研究了气相色谱柱特性的影响,还研究了柱温箱、气相色谱进样口和离子源温度对同时分析碳原子数范围为10至20的多氯化正构烷烃(PCAs-C)的影响。特别关注了CP工业混合物的绝对响应和PCA同系物组模式。宽同系物组测定的最佳条件是将气相色谱进样口、最终梯度和离子源温度分别设置为220 - 240°C、340°C和200°C。同时,与Optima 1柱相比,使用Optima 5HT柱可获得更高的响应,其柱长和膜厚分别为12.5 m和0.25μm。所研究的工业混合物的同系物组模式会根据离子源和气相色谱进样口温度、膜厚和固定相组成而发生显著变化。在此,我们推荐能改善整体PCA模式的条件,以便在未来的环境监测和暴露评估中更好地表征它们的存在情况。

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