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通过二维气相色谱和飞行时间质谱法对闪速热解油和加氢脱氧油中的成分进行鉴定和分类。

Identification and classification of components in flash pyrolysis oil and hydrodeoxygenated oils by two-dimensional gas chromatography and time-of-flight mass spectrometry.

作者信息

Marsman J H, Wildschut J, Evers P, de Koning S, Heeres H J

机构信息

University Groningen, Department of Chemical Engineering, Nijenborgh 4, 9747 AG Groningen, The Netherlands.

出版信息

J Chromatogr A. 2008 Apr 18;1188(1):17-25. doi: 10.1016/j.chroma.2008.02.034. Epub 2008 Feb 14.

DOI:10.1016/j.chroma.2008.02.034
PMID:18302963
Abstract

Hydrodeoxygenated pyrolysis oils (HDO) are considered promising renewable liquid energy carriers. To gain insights in the various reaction pathways taking place during the hydrodeoxygenation reaction of pyrolysis oil, two-dimensional gas chromatography with time-of-flight mass spectrometric analyses (2D-GC-TOF-MS) was applied on the feedstock and product oil. Chromatographic parameters like injection temperature and column choice of the 1D-(2)D ensemble are discussed. Fractionation of the oils by hexane extraction was applied to show the distribution of analytes over the phases. Some 1000 and 2000 components in the pyrolysis and HDO oil, respectively could be identified and classified. The TOF-MS detection considerably improved the understanding of the molecular distribution over the 1D-(2)D retention time fields in the contour plot, in order to classify the analytes in functional groups. By group-type classification of the main components (>0.3% relative area), it was possible to characterize the oils by 250 and 350 analytes, respectively pyrolysis oil and HDO oil, describing 75% of the chromatographable fraction. The 2D-GC-TOF-MS method showed to be a useful and fast technique to determine the composition of (upgraded) pyrolysis oil and is potentially a very useful tool for exploratory catalyst research and kinetic studies. The 2D-GC-TOF-MS technique is not only useful for the chemical study as such, but also provides the basic knowledge for method transfer to a 2D-GC-FID (flame ionization detector) application.

摘要

加氢脱氧热解油(HDO)被认为是很有前景的可再生液体能源载体。为深入了解热解油加氢脱氧反应过程中发生的各种反应途径,采用二维气相色谱-飞行时间质谱分析(2D-GC-TOF-MS)对原料和产物油进行分析。讨论了一维-二维系统的色谱参数,如进样温度和色谱柱选择。通过己烷萃取对油进行分馏,以显示分析物在各相中的分布。热解油和HDO油中分别可鉴定和分类出约1000种和2000种成分。TOF-MS检测显著提高了对等高线图中一维-二维保留时间域内分子分布的理解,以便将分析物按官能团分类。通过对主要成分(相对面积>0.3%)进行基团类型分类,分别用250种和350种分析物对热解油和HDO油进行表征,这些分析物占可色谱分离馏分的75%。2D-GC-TOF-MS方法被证明是一种有用且快速的技术,可用于测定(提质后的)热解油的组成,并且可能是探索性催化剂研究和动力学研究的非常有用的工具。2D-GC-TOF-MS技术不仅本身对化学研究有用,而且还为将方法转移到二维气相色谱-火焰离子化检测器(2D-GC-FID)应用提供了基础知识。

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