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TOC changes in the process of thermal evolution of source rock and its controls

机译:烃源岩热演化过程中的TOC变化及其控制

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摘要

Through geological observation, simulation in laboratory and numerical modeling, the factors that control the changes in total organic content (TOC) of source rock have been studied. When the formula DTOC=(TOC~0-TOC)/TOC~0 (original organic carbon content in the rock) is used to measure the TOC (total organic carbon content) changes in the source rock through geological time, the degrees and directions of such changes are determined by losses and relative amounts both of organic and inorganic matter in the source rock. The DTOC equation, which is used to calculate the loss rate in the process of maturation for the source rock, is therefore obtained by analyzing the mass balance relations. For a certain type of source rock with a certain maturation history, the changes of its TOC respond only to the rates of hydrocarbon generation and expulsion. In actual cases of geological entities, DTOC generally ranges from -0.05 to 0.2, while the calculated reconversion coefficient (k) for organic carbon content remains between 0.90 and 1.25. Only in an ideal situation where there are extremely high rates of hydrocarbon generation and expulsion can the DTOC value experience significant changes, with k reaching up to 2.5. It is concluded, therefore, that the criterion for carbonates source rock assessment, based on reconverting the TOC to the value of its original state, may have overestimated the course of the "carbon-reduction", which is likely in many cases to make a poor source rock sound better.
机译:通过地质观察,实验室模拟和数值模拟,研究了控制烃源岩总有机物含量(TOC)变化的因素。当公式DTOC =(TOC〜0-TOC)/ TOC〜0(岩石中原始有机碳含量)用于测量源岩在地质时间,程度和方向上的TOC(总有机碳含量)变化时这种变化的程度取决于源岩中有机物和无机物的损失和相对量。因此,通过分析质量平衡关系,可以得到用于计算烃源岩成熟过程中的损失率的DTOC方程。对于具有一定成熟历史的某种类型的烃源岩,其总有机碳的变化仅响应于烃的生成和排出速率。在实际的地质实体中,DTOC的范围通常为-0.05至0.2,而计算出的有机碳含量的再转化系数(k)则保持在0.90至1.25之间。只有在理想的情况下,碳氢化合物的生成和排出速率极高,DTOC值才能发生显着变化,其中k达到2.5。因此,得出的结论是,基于将TOC转换为原始状态的值而得出的碳酸盐岩源岩评估标准可能高估了“减碳”的过程,这在许多情况下可能会导致碳减排。源岩差的声音效果更好。

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