Experimental Data on Organic Matter Maturation in a Sample of Bazhenov Shale Formation (Western Siberia)

IF 0.3 Q4 GEOLOGY
G. G. Savostin, A. G. Kalmykov, D. A. Ivanova, G. A. Kalmykov
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Abstract

This paper presents the results of an isothermal kinetic experiment by closed-system hydrous pyrolysis using an oil source rock sample from the Bazhenov shale formation. After 48 hours of thermal exposure at a temperature of 350°C, 80% of the kerogen generation potential with respect to the initial sample was transformed into hydrocarbons. Changes in organic matter during laboratory modeling of maturation controlled by pyrolytic parameters, follow the same trends as changes in natural source rocks at different katagenesis stages. The kinetic spectra of kerogen activation energy destruction show a certain heterogeneity of organic matter inside the rock. A decrease in low-energy bonds and an increase in the maximum release of hydrocarbon compounds from 53 to 54 kcal/mol were observed at a constant frequency factor. The calculated changes in the generation of hydrocarbon compounds at different activation energies depending on the maturity level show differences from the experimental results, which indicates the influence of the maceral composition and the necessity to take the variability of individual components into account in basin modeling.

Abstract Image

巴热诺夫页岩层(西西伯利亚西部)样本中有机物成熟的实验数据
摘要 本文介绍了利用来自巴热诺夫页岩层的油源岩样品进行封闭系统水合热解等温动力学实验的结果。在 350°C 的温度下经过 48 小时的热暴露后,与初始样本相比,80% 的角质生成潜能转化为碳氢化合物。在由热解参数控制的实验室成熟模型中,有机物的变化趋势与天然源岩在不同角质生成阶段的变化趋势相同。角质活化能破坏的动力学光谱显示了岩石内部有机物的某种异质性。在频率系数不变的情况下,低能键减少,碳氢化合物的最大释放量从 53 kcal/mol 增加到 54 kcal/mol。在不同的活化能下,碳氢化合物生成量的计算变化取决于成熟度,与实验结果存在差异,这表明了大分子成分的影响,以及在盆地建模中考虑单个成分变化的必要性。
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来源期刊
CiteScore
0.60
自引率
25.00%
发文量
43
期刊介绍: Moscow University Geology Bulletin  is the journal that mainly publishes scientific articles, short reports of graduate students, and reviews. Publications made by the members of the Faculty of Geology of the Moscow State University and their collaborators are published. Publications encompass all branches of geology.
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