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Insight into unresolved complex mixtures of aromatic hydrocarbons in heavy oil via two-dimensional gas chromatography coupled With time-of-flight mass spectrometry analysis

机译:通过二维气相色谱和飞行时间质谱分析深入了解重油中未解决的芳香烃复杂混合物

摘要

The aromatic hydrocarbon fractions of five crude oils representing a natural sequence of increasing degree of biodegradation from the Liaohe Basin, NE, China, were analyzed using conventional gas chromatography-mass spectrometry (GC-MS) and comprehensive two-dimensional gas chromatography (GC x GC). Because of the limited peak capability and low resolution, compounds in the aromatic fraction of a heavily biodegraded crude oil that were analyzed by GC-MS appeared as unresolved complex mixtures (UCMs) or GC "humps". They could be separated based on their polarity by GC x GC. UCMs are composed mainly of aromatic biomarkers and aromatic hydrocarbons with branched alkanes or cycloalkanes substituents. The quantitative results achieved by GC x GC-FID were shown that monoaromatic hydrocarbons account for the largest number and mass of UCMs in the aromatic hydrocarbon fraction of heavily biodegraded crude oil, at 45% by mass. The number and mass of diaromatic hydrocarbons ranks second at 33% by mass, followed by the aromatic biomarker compounds, triaromatic, tetraaromatic, and pentaaromatic hydrocarbons, that account for 10%, 6%, 1.5%, and 0.01% of all aromatic compounds by mass, respectively. In the heavily biodegraded oil, compounds with monocyclic cycloalkane substituents account for the largest proportion of mono- and diaromatic hydrocarbons, respectively. The C-4-substituted compounds account for the largest proportion of naphthalenes and the C-3-substituted compounds account for the largest proportion of phenanthrenes, which is very different from non-biodegraded, slightly biodegraded, and moderately biodegraded crude oil. It is inferred that compounds of monoaromatic, diaromatic and triaromatic hydrocarbons are affected by biodegradation, that compounds with C-1-, C-2-substituents are affected by the increase in degree of biodegradation, and that their relative content decreased, whereas compounds with C-3-substituents or more were affected slightly or unaffected, and their relative content also increased. The varying regularity of relative content of substituted compounds may be used to reflect the degree of degradation of heavy oil. Moreover, biomarkers for the aromatic hydrocarbons of heavily biodegraded crude oil are mainly aromatic steranes, aromatic secohopanes, aromatic pentacyclotriterpanes, and benzohopanes. According to resultant data, aromatic secohopanes could be used as a specific marker because of their relatively high concentration. This aromatic compound analysis of a series of biodegraded crude oil is useful for future research on the quantitative characterization of the degree of biodegradation of heavy oil, unconventional oil maturity evaluation, oil source correlation, depositional environment, and any other geochemical problems. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用常规气相色谱-质谱(GC-MS)和综合二维气相色谱(GC x)分析了代表中国东北辽河盆地生物降解程度增加的自然序列的5种原油的芳烃馏分GC)。由于有限的峰容量和低分离度,通过GC-MS分析的生物降解度很高的原油芳烃馏分中的化合物表现为未解析的复杂混合物(UCM)或GC“峰”。它们的极性可以通过GC x GC分离。 UCM主要由芳香族生物标志物和具有支链烷烃或环烷烃取代基的芳香烃组成。 GC x GC-FID获得的定量结果表明,在高度生物降解的原油的芳烃馏分中,单芳烃占UCM的最大数量和质量,质量百分比为45%。第二芳族烃的数量和质量为33%,位居第二,其次是芳族生物标志物化合物,三芳族,四芳族和五芳族烃,分别占所有芳族化合物的10%,6%,1.5%和0.01%。质量。在高度生物降解的油中,具有单环环烷烃取代基的化合物分别占单芳烃和二芳烃的最大比例。 C-4-取代的化合物占萘的最大比例,而C-3-取代的化合物占菲的最大比例,这与非生物降解,生物降解程度较低和生物降解程度中等的原油有很大不同。可以推断,单芳烃,二芳烃和三芳烃的化合物会受到生物降解的影响,具有C-1-,C-2-取代基的化合物会受到生物降解程度的影响,并且其相对含量会降低,而具有C-3或以上的取代基受到轻微或不受影响,它们的相对含量也增加了。取代化合物的相对含量的变化规律可用于反映重油的降解程度。而且,用于高度生物降解的原油的芳族烃的生物标记物主要是芳族甾烷,芳族仲庚烷,芳族五环三萜烷和苯并庚烷。根据所得数据,由于芳香族仲丁烯酮相对较高的浓度,因此可以用作特定标记。一系列生物降解原油的芳香化合物分析可用于未来重油生物降解程度的定量表征,非常规油成熟度评估,油源相关性,沉积环境以及任何其他地球化学问题的研究。 (C)2015 Elsevier B.V.保留所有权利。

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