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通过全二维气相色谱-飞行时间质谱联用对未分离的煤焦油样品中的含氮化合物进行形态分析。

Speciation of nitrogen-containing compounds in an unfractionated coal tar sample by comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry.

作者信息

da Silva Juliana M, Machado Maria Elisabete, Maciel Gabriela P S, Dal Molin Daniela, Caramão Elina B

机构信息

Chemistry Institute, UFRGS, Porto Alegre, RS, Brazil; Liberato Foundation, Novo Hamburgo, RS, Brazil.

Chemistry Institute, UFRGS, Porto Alegre, RS, Brazil.

出版信息

J Chromatogr A. 2014 Dec 19;1373:159-68. doi: 10.1016/j.chroma.2014.11.004. Epub 2014 Nov 15.

DOI:10.1016/j.chroma.2014.11.004
PMID:25464993
Abstract

Comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry (GC×GC/TOFMS) has shown great skill in analyzing complex mixtures such as fossil fuels, especially for compounds at low concentrations. The analysis of N-polyaromatic compounds (NPAC) in coal and crude oil is a great challenge for analytical chemistry due to its environmental and technological importance, and also its diversity of concentration in the matrix. This study is the first report in the applicability of GC×GC/TOFMS for detection of NPAC in a coal tar sample with no fractionation. Normally these compounds are analyzed after sample treatment, making the process expensive and time consuming. However, the higher separation power of GC×GC/TOFMS, compared to 1D-GC, produces cleaner mass spectra in complex samples, which helps in identification of analytes with no pre-fractionation. In this paper, the main objectives were to demonstrate the applicability of GC×GC/TOFMS in the speciation and separation between basic and neutral NPAC from coal tar sample derived from fast pyrolysis, without prior sample fractionation. The methodology used here consisted of chromatographic injection of the diluted sample using a conventional columns set and data analysis by ChromaTOF/Excel™ software. Some basic compounds (pyridines and quinolines) and neutral ones (carbazoles and indoles) were detected with good chromatographic separation and spectral similarity. Tools like spectral deconvolution, extracted ion chromatogram (EIC) and dispersion graphics allowed greater security on the identification and separation of NPAC in this complex sample of coal tar, with no pre-treatment.

摘要

全二维气相色谱-飞行时间质谱联用技术(GC×GC/TOFMS)在分析复杂混合物(如化石燃料)方面展现出了卓越的能力,尤其适用于低浓度化合物的分析。由于其环境和技术重要性,以及在基质中浓度的多样性,煤和原油中N-多环芳烃化合物(NPAC)的分析对分析化学来说是一项巨大挑战。本研究首次报道了GC×GC/TOFMS在未进行分馏的煤焦油样品中检测NPAC的适用性。通常,这些化合物在样品处理后进行分析,这使得该过程昂贵且耗时。然而,与一维气相色谱相比,GC×GC/TOFMS具有更高的分离能力,能够在复杂样品中产生更纯净的质谱图,有助于在不进行预分馏的情况下鉴定分析物。本文的主要目的是证明GC×GC/TOFMS在对快速热解得到的煤焦油样品中的碱性和中性NPAC进行形态分析和分离方面的适用性,且无需事先对样品进行分馏。这里使用的方法包括使用常规柱组对稀释后的样品进行色谱进样,并通过ChromaTOF/Excel™软件进行数据分析。检测到了一些碱性化合物(吡啶和喹啉)和中性化合物(咔唑和吲哚),它们具有良好的色谱分离效果和光谱相似性。光谱去卷积、提取离子色谱图(EIC)和色散图形等工具能够在不进行预处理的情况下,更可靠地鉴定和分离该复杂煤焦油样品中的NPAC。

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