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离线方法在软电离和高分辨串联质谱技术复杂有机混合物痕量测量中的进展。

Advances in offline approaches for trace measurements of complex organic compound mixtures via soft ionization and high-resolution tandem mass spectrometry.

机构信息

Department of Chemical and Environmental Engineering, Yale University, New Haven, CT-06511, USA.

Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543; Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139.

出版信息

J Chromatogr A. 2019 Aug 2;1598:163-174. doi: 10.1016/j.chroma.2019.03.037. Epub 2019 Mar 19.

Abstract

Complex airborne mixtures of organic compounds can contain 10,000's of diverse compounds at trace concentrations. Here, we incorporate high-resolution mass spectrometry into our integrated offline sampling-to-analysis measurement system for routine molecular-level speciation of complex mixtures in gas- or particle-phase samples with detection limits of 2-20 pg L (i.e. 0.2-1.9 ppt in 6 L samples). Analytes desorbed from custom adsorbent tubes (or filter extracts) were separated via gas chromatography (GC) and simultaneously analyzed by an electron ionization quadrupole mass spectrometer (EI-MS), and by atmospheric pressure chemical ionization (APCI) combined with a high-resolution quadrupole time-of-flight mass spectrometer (Q-TOF) with a resolution of 25,000-40,000 M/ΔM in HR-TOF and MS/MS modes. We demonstrated our system with simple standards, a Macondo crude oil standard as a reference for complex mixtures of common airborne compounds, and ambient samples using GC-TOF and GC-MS/MS. We speciated complex mixtures at mass accuracy error (i.e. mass tolerance) down to 8 ± 2 ppm (e.g. resolving analytes of mass 270.000 u with 0.003 u accuracy) using a targeted approach with 3000 molecular formulas, including hydrocarbons and functionalized analytes containing oxygen, sulfur, nitrogen, or phosphorous. This extended from compounds with 10 to 32 carbon atoms and up to 16 hydrocarbon formulas per carbon number, and a similar range for functionalized compound classes. We also demonstrated our MS/MS capabilities to differentiate structural isomers and determine the presence of specific functional groups; and our direct-TOF capability, which bypasses high-temperature chromatographic separation to preserve functionalized analytes.

摘要

复杂的空气污染物混合物可能包含数千种痕量的不同化合物。在这里,我们将高分辨质谱分析与我们的集成离线采样-分析测量系统相结合,用于对气相或颗粒相样品中的复杂混合物进行常规的分子水平形态分析,检测限为 2-20 pg L(即 6 L 样品中的 0.2-1.9 ppt)。从定制吸附管(或滤膜提取)中解吸的分析物通过气相色谱(GC)分离,并通过电子电离四极杆质谱仪(EI-MS)以及大气压化学电离(APCI)与高分辨四极杆飞行时间质谱仪(Q-TOF)同时分析,在 HR-TOF 和 MS/MS 模式下分辨率为 25,000-40,000 M/ΔM。我们使用简单的标准品、马贡多原油标准品(用于常见空气污染物复杂混合物的参考)以及使用 GC-TOF 和 GC-MS/MS 的环境样品来验证我们的系统。我们使用目标方法对复杂混合物进行了形态分析,质量准确度误差(即质量公差)低至 8±2 ppm(例如,以 0.003 u 的精度解析质量为 270.000 u 的分析物),使用了 3000 个分子公式,包括碳氢化合物和含氧、硫、氮或磷的官能化分析物。这涵盖了 10 至 32 个碳原子的化合物,以及每个碳原子数多达 16 个的碳氢化合物公式,以及类似范围的官能化化合物类别。我们还展示了我们的 MS/MS 能力来区分结构异构体并确定特定官能团的存在;以及我们的直接-TOF 能力,它绕过高温色谱分离以保留官能化分析物。

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