煤系烃源岩中四种类型高丰度重排藿烷组成特征及成因探讨-以鄂尔多斯盆地上古生界为例
- 收稿日期:
2023-10-19
- 网络出版日期:
2024-04-07
摘要: 【目的】为了探讨煤系烃源岩中高-异常高丰度重排藿烷类化合物的组成特征及主控因素。【方法】利用色谱-质谱(GC-MS)分析技术,对鄂尔多斯盆地上古生界29个煤系烃源岩饱和烃和芳烃进行了详细剖析。【结果与讨论】检测到不同丰度四种类型的重排藿烷,它们是17α(H)-重排藿烷系列(C30*)、18α(H)-新藿烷系列(Ts和C29Ts)、早洗脱重排藿烷系列(C30E)和21-甲基-28-降藿烷系列(29Nsp)。研究区煤系烃源岩中四种类型重排藿烷化合物的内组成研究表明,同一系列重排藿烷类化合物之间表现出良好的相关性;不同系列重排藿烷类化合物之间相关性有所不同,表现为C30*/C30藿烷、C30E/C30藿烷、29Nsp/C29藿烷这三者之间的相关性较好,C29Ts/C29藿烷与上述三者的相关性均较差,说明不同系列重排藿烷类化合物形成机理可能有所差别。此外,研究区煤系烃源岩样品中高-异常高丰度17α(H)-重排藿烷系列、早洗脱重排藿烷系列、21-甲基-28-降藿烷系列重排藿烷Pr/Ph值分布在1.0~2.0之间、伽马蜡烷(G)/C30藿烷值大都分布在0.13左右、氧芴的相对含量在11.67%~55.26%之间,平均值为35.51%;也就是说,煤系烃源岩沉积环境对这些重排藿烷类化合物的相对丰度影响较大。随着有机质热演化程度的增加,这些重排藿烷类化合物相对丰度呈现出近似正态分布,在生油高峰阶段(Ro为0.8%~0.9%之间),高-异常高重排藿烷类化合物相对丰度达到峰值。除此之外,高-异常高丰度重排藿烷类化合物样品(C28+C29)三环萜烷(TT)/C30藿烷比值和规则甾烷/C30-35藿烷与四种类型重排藿烷类化合物各个比值均具有明显的正相关性,揭示高-异常高重排藿烷类化合物的生源母质主要为低等水生生物和菌藻类化合物。【结论】通过同一系列重排藿烷类化合物具有相同演化路径与形成机制,推测煤系烃源岩中17α(H)-重排藿烷系列、早洗脱重排藿烷系列、21-甲基-28-降藿烷系列高-异常高重排藿烷形成的主控因素主要为弱氧化-弱还原、微咸水沉积环境发育的细菌藿烷前身物;而高-异常高丰度18α(H)-新藿烷的形成主要受控于有机质的生源母质,其生源母质可能为里白烯或C29藿烷类化合物。
Composition Characteristics and Genesis of four types of high-abundance Rearranged Hopanes in Coal-measure Source Rocks: A case Study of Upper Paleozoic in Ordos Basin
- Received Date:
2023-10-19
- Available Online:
2024-04-07
Abstract: [Objective]In order to explore the composition characteristics and main controlling factors of high-abnormally high abundant rearranged hopanes in coal-measure source rocks. [Methods]The saturated hydrocarbons and aromatic hydrocarbons of 29 coal measure source rocks in the Upper Paleozoic of Ordos Basin were analyzed in detail by gas chromatography-mass spectrometry (GC-MS). [Results] According to the peak order and retention time of compounds, GC-MS analysis of coal measure source rocks in Ordos Basin was carried out. Four types of rearranged hopanes with different abundances were systematically identified, which were 17α (H) -rearranged hopane series (C30*), 18α(H) -neohopane series (Ts and C29Ts), early-eluting rearranged hopane series (C30E) and 21-methyl-28-norhopane series (29Nsp). And the peak order of the four types of rearranged hopane compounds is: early-eluting rearranged hopane series > 17α (H) -rearranged hopane series > 18α (H) -neohopane series > 21-methyl-28-norhopane series. The study of the internal composition of four types of rearranged hopane compounds in the coal-bearing source rocks in the study area shows that there is a good correlation between the same series of rearranged hopane compounds; the correlation between different series of rearranged hopanes is different. The correlation between C30*/C30 hopane, C30E/C30 hopane and 29Nsp/C29 hopane is good, but the correlation between C29Ts/C29 hopane and the above three is poor, indicating that the formation mechanism of different series of rearranged hopanes may be different. In addition, The Pr/Ph values of the high-abnormally high abundant of 17α (H)- rearranged hopane series, early-eluting rearranged hopane series, 21-methyl-28-norhopane series in the coal source rock samples in the study area are distributed between 1.0 and 2.0, the Gammacerane(G)/C30 hopane values are mostly distributed around 0.13, and the relative content of dibenzofuran is between 11.67 % and 55.26 %, with an average value of 35.51%. To put it another way, the sedimentary environment of coal-measure source rocks has a great influence on the relative abundance of these rearranged hopane compounds. With the increase of thermal evolution degree of organic matter, the relative abundance of these rearranged hopane compounds shows an approximate normal distribution. In the peak stage of oil generation (Ro is between 0.8%and 0.9%), the relative abundance of high-abnormally high abundant rearranged hopanes compounds reaches the peak. What’s more, The ratios of (C28+C29) tricyclic terpanes(TT)/C30 hopanes and ∑regular steranes / ∑C30-35 hopanes in high-abnormally high abundant rearranged hopanes samples were significantly positively correlated with the ratios of four types of rearranged hopanes, revealing that the biogenic parent materials of high-abnormally high-abundant rearranged hopanes are mainly lower aquatic organisms and algae compounds.[Conclusion] Through the same evolution path and formation mechanism of the same series of rearranged hopanes, it is speculated that the main controlling factors for the formation of 17α (H) -rearranged hopane series, early-eluting rearranged hopane series, 21-methyl-28-norhopane series high-abnormally high rearranged hopanes in coal-measure source rocks are mainly weak oxidation-weak reduction, bacterial hopane precursors developed in brackish water sedimentary environment ; the formation of high-abnormal high-abundance 18α (H)-neohopanes is mainly controlled by the biogenic parent material of organic matter, which may be limonene or C29 hopane compounds.