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Biodegradation characteristics of heavy oil and correlation with group composition and carbon isotopes

机译:重油和群组成和碳同位素的重质油生物降解特征

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摘要

Shallow heavy oil is abundant but seriously biodegraded in Chepaizi Uplift and many biomarkers cannot be used effectively. Therefore, some new parameters and methods are used to analyze the biodegradation extent, classification, and oil-source of heavy oil samples. The acid value and group compositions are used to evaluate the biodegradation extent. Carbon isotopes are not only used to calculate the percentage of complex combined oil, but also to correlate oil-source in Chepaizi Uplift. C-13 of oil is used together with biomarkers that can bear serious degradation, such as pregnanes, tricyclic terpanes, and gammacerane. The crossplots of C-13 and biomarkers are effective correlation tools, such as the crossplot of C-13 and C-21/C-23 tricyclic terpanes. C-13 in different group compositions also show excellent oil-source correlation results. These methods to study biodegraded heavy oil are not only helpful to clarify the biodegradation extent of shallow heavy oil in an extensive area, but also effective to classify heavy oil and correlate oil-source.
机译:浅层油丰富,但在赤浩卓隆起的严重生物降解,许多生物标志物不能有效地使用。因此,一些新的参数和方法用于分析重油样品的生物降解程度,分类和油源。酸值和基团组合物用于评估生物降解程度。碳同位素不仅用于计算复合综合油的百分比,而且用于在赤膜隆起的隆起中相关。油的C-13与生物标志物一起使用,生物标志物可以承受严重的降解,例如妊娠,三环萜酯和γ甲烷。 C-13和生物标志物的交联是有效的相关工具,例如C-13和C-21 / C-23三环萜瓶的十字点。 C-13在不同组组合物中还显示出优异的油源相关结果。这些研究生物降解的重油的方法不仅有助于在广泛的区域中澄清浅层重油的生物降解程度,而且还有效地分类重油和相关油源。

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