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采用超高效液相色谱-大气压化学电离飞行时间质谱法同时测定空气中和烟尘颗粒中多环芳烃的硝化和氧化产物。

Simultaneous determination by ultra-performance liquid chromatography-atmospheric pressure chemical ionization time-of-flight mass spectrometry of nitrated and oxygenated PAHs found in air and soot particles.

机构信息

University Lille Nord de France, 59500, Lille, France.

Ecole des Mines de Douai, Département Chimie et Environnement, BP 10838, 59508, Douai, France.

出版信息

Anal Bioanal Chem. 2010 May;397(1):243-256. doi: 10.1007/s00216-009-3416-2. Epub 2010 Jan 26.

DOI:10.1007/s00216-009-3416-2
PMID:20101503
Abstract

An ultra-performance liquid chromatographic-atmospheric pressure chemical ionization time-of-flight mass spectrometric (UPLC-APCIToFMS) method for rapid analysis of twelve nitrated polycyclic aromatic hydrocarbons (NPAHs) and nine oxygenated polycyclic aromatic hydrocarbons (OPAHs) in particle samples has been developed. The extraction step using pressurized liquid extraction was optimized by experimental design methods and the concentrated extracts were analyzed without further clean-up. Matrix effects resulting in suppression or enhancement of the response during the ionization step were not observed. The suitability of the developed method is demonstrated by analysis of six different particle samples including standard reference materials, atmospheric particles collected by a high-volume sampler at an urban background site, and a soot sample from a burner. Results from these measurements showed clear differences between the different kinds of samples. Concentrations from reference materials are in good agreement with those from previous studies. Additionally a clear seasonal trend could be observed in atmospheric NPAH and OPAH concentrations found in real samples, with higher concentrations in winter.

摘要

建立了一种超高效液相色谱-大气压化学电离飞行时间质谱(UPLC-APCIToFMS)方法,用于快速分析颗粒物样品中的 12 种硝基多环芳烃(NPAHs)和 9 种含氧多环芳烃(OPAHs)。采用实验设计方法优化了加压液体萃取的萃取步骤,浓缩提取物无需进一步净化即可进行分析。在离子化步骤中,没有观察到基质效应导致响应的抑制或增强。通过分析六种不同的颗粒物样品,包括标准参考物质、在城市背景点用大容量采样器采集的大气颗粒物和燃烧器中的烟尘样品,证明了该方法的适用性。这些测量结果表明,不同类型的样品之间存在明显差异。参考物质的浓度与以前研究中的浓度吻合良好。此外,在实际样品中还可以观察到大气 NPAH 和 OPAH 浓度的明显季节性趋势,冬季浓度较高。

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