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在线高效液相色谱与全二维气相色谱-三重四极杆质谱联用:原理研究验证。

On-line combination of high performance liquid chromatography with comprehensive two-dimensional gas chromatography-triple quadrupole mass spectrometry: a proof of principle study.

机构信息

Dipartimento di Scienze del Farmaco e Prodotti per la Salute, University of Messina , Viale Annunziata, 98168 Messina, Italy.

出版信息

Anal Chem. 2015 Feb 3;87(3):1911-8. doi: 10.1021/ac504162a. Epub 2015 Jan 9.

DOI:10.1021/ac504162a
PMID:25536115
Abstract

The present contribution is focused on the on-line combination of high performance liquid chromatography (HPLC), cryogenically modulated comprehensive two-dimensional gas chromatography (GC × GC), and triple quadrupole mass spectrometry (QqQ MS), generating a very powerful unified separation-science tool. The instrument can be used in seven different combinations ranging from one-dimensional HPLC with a photodiode array detector to on-line LC × GC × GC/QqQ MS. The main focus of the present research is directed to the LC-GC × GC/QqQ MS configuration, with its analytical potential shown in a proof-of-principle study involving a very complex sample, namely, coal tar. Specifically, a normal-phase LC process enabled the separation of three classes of coal tar compounds: (1) nonaromatic hydrocarbons; (2) unsaturated compounds (with and without S); (3) oxygenated constituents. The HPLC fractions were transferred to the GC × GC instrument via a syringe-based interface mounted on an autosampler. Each fraction was subjected to a specific programmed temperature vaporizer GC × GC/QqQ MS untargeted or targeted analysis. For example, the coal tar S-containing compounds were pinpointed through multiple-reaction-monitoring analysis, while full-scan information was attained for the oxygenated constituents.

摘要

本研究致力于将高效液相色谱(HPLC)、低温调制全二维气相色谱(GC×GC)和三重四极杆质谱(QqQ MS)在线组合,形成一个非常强大的统一分离科学工具。该仪器可用于七种不同的组合,从带有光电二极管阵列检测器的一维 HPLC 到在线 LC×GC×GC/QqQ MS。本研究的主要重点是 LC-GC×GC/QqQ MS 配置,其分析潜力在一个涉及非常复杂样品(即煤焦油)的原理验证研究中得到了展示。具体来说,正相 HPLC 过程能够分离三类煤焦油化合物:(1)非芳烃烃;(2)不饱和化合物(含 S 和不含 S);(3)含氧成分。HPLC 馏分通过安装在自动进样器上的基于注射器的接口转移到 GC×GC 仪器。每个馏分都通过特定的程序升温汽化器 GC×GC/QqQ MS 进行非靶向或靶向分析。例如,通过多反应监测分析定位煤焦油含 S 化合物,而含氧成分则获得全扫描信息。

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