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采用带有火焰离子化检测器的气相色谱法和带有飞行时间质谱的全面二维气相色谱法对热解油进行定性和定量分析。

Qualitative and quantitative analysis of pyrolysis oil by gas chromatography with flame ionization detection and comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry.

机构信息

Centre for Research & Technology Hellas, Chemical Process Engineering Research Institute, Thessaloniki, Greece.

出版信息

J Chromatogr A. 2011 May 27;1218(21):3317-25. doi: 10.1016/j.chroma.2010.10.034. Epub 2010 Oct 13.

Abstract

Pyrolysis oils have attracted a lot of interest, as they are liquid energy carriers and general sources of chemicals. In this work, gas chromatography with flame ionization detector (GC-FID) and two-dimensional gas chromatography with time-of-flight mass spectrometry (GC×GC-TOFMS) techniques were used to provide both qualitative and quantitative results of the analysis of three different pyrolysis oils. The chromatographic methods and parameters were optimized and solvent choice and separation restrictions are discussed. Pyrolysis oil samples were diluted in suitable organic solvent and were analyzed by GC×GC-TOFMS. An average of 300 compounds were detected and identified in all three samples using the ChromaToF (Leco) software. The deconvoluted spectra were compared with the NIST software library for correct matching. Group type classification was performed by use of the ChromaToF software. The quantification of 11 selected compounds was performed by means of a multiple-point external calibration curve. Afterwards, the pyrolysis oils were extracted with water, and the aqueous phase was analyzed both by GC-FID and, after proper change of solvent, by GC×GC-TOFMS. As previously, the selected compounds were quantified by both techniques, by means of multiple point external calibration curves. The parameters of the calibration curves were calculated by weighted linear regression analysis. The limit of detection, limit of quantitation and linearity range for each standard compound with each method are presented. The potency of GC×GC-TOFMS for an efficient mapping of the pyrolysis oil is undisputable, and the possibility of using it for quantification as well has been demonstrated. On the other hand, the GC-FID analysis provides reliable results that allow for a rapid screening of the pyrolysis oil. To the best of our knowledge, very few papers have been reported with quantification attempts on pyrolysis oil samples using GC×GC-TOFMS most of which make use of the internal standard method. This work provides the ground for further analysis of pyrolysis oils of diverse sources for a rational design of both their production and utilization process.

摘要

热解油作为液体能源载体和一般化学品来源,引起了人们的广泛关注。在这项工作中,使用气相色谱法(GC-FID)和二维气相色谱法(GC×GC-TOFMS)技术,对三种不同热解油进行了定性和定量分析。优化了色谱方法和参数,讨论了溶剂选择和分离限制。将热解油样品稀释在合适的有机溶剂中,通过 GC×GC-TOFMS 进行分析。使用 ChromaToF(Leco)软件,在所有三种样品中平均检测到并鉴定出 300 种化合物。对解卷积光谱与 NIST 软件库进行比较,以进行正确匹配。使用 ChromaToF 软件进行组类型分类。通过多点外部校准曲线对 11 种选定化合物进行定量。然后,用热水萃取热解油,用 GC-FID 分析水相,然后在适当改变溶剂后,用 GC×GC-TOFMS 分析。与之前一样,通过多点外部校准曲线,使用两种技术对选定化合物进行定量。通过加权线性回归分析计算校准曲线的参数。给出了每种方法中每个标准化合物的检出限、定量限和线性范围。GC×GC-TOFMS 对热解油进行有效映射的能力无可争议,并且已经证明了它用于定量的可能性。另一方面,GC-FID 分析提供了可靠的结果,允许快速筛选热解油。据我们所知,使用 GC×GC-TOFMS 对热解油样品进行定量尝试的论文很少,其中大多数使用内标法。这项工作为进一步分析不同来源的热解油提供了基础,以便合理设计其生产和利用过程。

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