首页> 外文期刊>Science in China. Series D, Earth sciences >Comprehensive geochemical identification of highly evolved marine carbonate rocks as hydrocarbon-source rocks as exemplified by the Ordos Basin
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Comprehensive geochemical identification of highly evolved marine carbonate rocks as hydrocarbon-source rocks as exemplified by the Ordos Basin

机译:以鄂尔多斯盆地为例,对高度演化的海相碳酸盐岩作为烃源岩的综合地球化学识别

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This study reversed the developing environments of hydrocarbon-source rocks in the Ordos Basin and evaluated carbonate rocks as hydrocarbon-source rocks and their distributions on account of the fact that China's marine carbonate rocks as hydrocarbon-source rocks are characterized by intensive thermal evolution and relatively low abundance of organic matter, by taking the Lower Paleozoic of the Ordos Basin for example and in light of the calculated enrichment coefficients of trace elements, the REE distribution patterns, the mathematical statistics analysis of elements and carbon isotopes and their three-dimensional diagrammatization in combination with the necessary organic parameters. As for the Ordos Basin, TOC=0.2% is an important boundary value. Studies have shown that in the strata where TOC is greater than 0.2%, Ba is highly enriched with positive δ~(13)C_(carb) shifts and δ~(13)C_(org) less than -28per thousand, reflecting a thigh paleo-productivity, high burial amounts of organic matter, relatively good hydrocarbon-generating potentiality and intensive REE fractionation. All these indicated that the settlement rates are low and the geological conditions are good for the preservation of organic matter, hence favoring the development of hydrocarbon-source rocks. The Klimory and Wulalik formations show certain regularities in those aspects and, therefore, they can be regarded as the potential effective hydrocarbon-source rocks. In the strata where total TOC is less than 0.2%, the contents of Ba are low, δ~(13)C_(carb) values are mostly negative, and δ~(13)C_(org) values range from -24per thousand—-28per thousand, demonstrating low burial amounts of organic matter, poor potentialities of hydrocarbon generation, weak REE fractionation and rapid settlement rates. These facts showed that most of the hydrocarbon-source rocks were formed in shallow-water, high-energy oxidizing environments, thus un-favoring the development of hydrocarbon-source rocks. It is feasible to make use of the geochemical method to comprehensively assess the highly evolved marine carbonates rocks as potential hydrocarbon-source rocks and their distributions.
机译:这项研究逆转了鄂尔多斯盆地烃源岩的发育环境,并评价了碳酸盐岩为烃源岩及其分布,这是因为中国海相碳酸盐岩作为烃源岩具有强烈的热演化特征,并且相对地具有相对优势。以鄂尔多斯盆地下古生界为例,并根据计算出的微量元素富集系数,REE分布规律,元素和碳同位素的数学统计分析及其三维图解法,对低有机质含量进行了研究。结合必要的有机参数。对于鄂尔多斯盆地,TOC = 0.2%是一个重要的边界值。研究表明,在TOC大于0.2%的地层中,Ba高度富集,具有正的δ〜(13)C_(carb)位移,δ〜(13)C_(org)小于-28 /千,反映了大腿古生产力,高掩埋有机质,相对好的生烃潜力和密集的REE分馏。这些都说明沉降速率低,地质条件有利于有机质的保存,有利于烃源岩的开发。 Klimory和Wulalik地层在这些方面显示出一定的规律性,因此可以将其视为潜在的有效烃源岩。在总TOC小于0.2%的层中,Ba的含量低,δ〜(13)C_(carb)值大多为负,δ〜(13)C_(org)值的范围为-24- -28 /千,表明埋葬的有机物量低,生烃潜力差,REE分馏力弱和沉降速度快。这些事实表明,大多数烃源岩是在浅水高能氧化环境中形成的,不利于烃源岩的开发。利用地球化学方法综合评价高度演化的海相碳酸盐岩作为潜在的烃源岩及其分布是可行的。

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