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吐哈盆地台北凹陷下侏罗统原油地球化学特征及油—源精细对比 被引量:2
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作者 王柏然 黄志龙 +4 位作者 肖冬生 贾雪丽 曾文人 屈童 杨易卓 《天然气地球科学》 CAS CSCD 北大核心 2024年第1期164-175,共12页
新疆东部吐哈盆地台北凹陷下侏罗统致密油性质及分布规律复杂,下侏罗统三工河组及八道湾组烃源岩的沉积环境及物源特征差异明显。应用地球化学手段,对吐哈盆地下侏罗统原油类型进行划分并进行油—源精细对比,同时梳理油气分布与其来源... 新疆东部吐哈盆地台北凹陷下侏罗统致密油性质及分布规律复杂,下侏罗统三工河组及八道湾组烃源岩的沉积环境及物源特征差异明显。应用地球化学手段,对吐哈盆地下侏罗统原油类型进行划分并进行油—源精细对比,同时梳理油气分布与其来源的差异性。研究结果表明:台北凹陷胜北—丘东洼陷三工河组原油以凝析油为主,根据原油饱和烃及芳香烃生物标志物特征及其差异,可划分为两大类三小类原油。其中Ⅰ类和Ⅱ类原油的划分主要依据其有机质来源类型的差异,Ⅰ类原油的陆源高等植物贡献较多且形成于淡水沉积环境,与研究区下侏罗统八道湾组煤系烃源岩具有明显的亲缘关系,该类原油样品主要分布在丘东洼陷区、温吉桑和北部山前带等构造高部位,成熟度较低。Ⅱ类原油均为三工河组湖相泥岩贡献,其中Ⅱ1类原油主要分布在丘东洼陷区三工河组二段的致密砂岩储层中,生烃母岩形成时期水体盐度较高,干酪根以低等水生生物贡献为主,与三工河组湖相泥岩有明显亲缘关系,Ⅱ2类原油主要分布于胜北洼陷区三工河组致密储层中,其主要来自于胜北洼陷区三工河组泥岩。研究证实了台北凹陷三工河组湖相泥岩除了作为盖层外,同时可以作为生油岩对致密油气有一定的贡献,其对深化台北凹陷油源的新认识和油气藏预测有较大指导作用。 展开更多
关键词 地球化学特征 成因类型 油—源对比 三工河组 八道湾组 台北凹陷 吐哈盆地
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Contentious Petroleum Geochemical Issues in China’s Sedimentary Basins 被引量:5
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作者 黎茂稳 庞雄奇 《Petroleum Science》 SCIE CAS CSCD 2004年第3期4-22,40,共20页
Petroleum geochemistry contributes to exploration successes by providing key constraints for geological models and critical input to exploration scenarios. One of the most important tasks in a typical exploration pr... Petroleum geochemistry contributes to exploration successes by providing key constraints for geological models and critical input to exploration scenarios. One of the most important tasks in a typical exploration program is to identify the most effective source intervals or kitchens in a basin, through oil-source correlation. The results of correlation are valid only if the geochemical parameters used address adequately the genetic characteristics of the source rocks as well as the mass transport and mixing processes of hydrocarbon fluids occurring in the carrier beds and reservoirs. This manuscript discusses four of the major contentious petroleum geochemical issues in China’s sedimentary basins. It is suggested that marine incursions played a significant role in the formation of prolific petroleum source rocks in the gigantic, dominantly freshwater, Songliao Basin. Several models are proposed to account for the occurrence of immature oils in the Cathaysian rift system including the Bohai Bay Basin, thus immature source rocks are considered a mere minor contributor to the known economic immature oil resources. Both geological and geochemical evidence are reviewed to refute a dominantly coaly source for the petroleum discovered in the Turpan Basin. Results of case studies are presented to demonstrate the importance of recognizing petroleum fluid mixing to solve the oil-source correlation issues in the structurally complex Tarim Basin. In addressing the fundamental assumptions and potential flaws of the molecular geochemical parameters commonly used for oil-source correlation, the need of a mass fraction approach is proposed to deal with such contentious issues as marine versus lacustrine, coal versus lacustrine, and mature versus immature oils. 展开更多
关键词 Oil-source correlation immature oil coal-derived oil oil-gas mixed sources Songliao Basin Bohai Bay Basin Tuha Basin Tarim Basin
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Oil-source correlation of Lower-Triassic oil seepages in Ni'erguan village, Southern Guizhou Depression, China
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作者 Fang Yuan Yuhong Liao +1 位作者 Yunxin Fang Ansong Geng 《Acta Geochimica》 EI CAS CSCD 2016年第1期50-63,共14页
There are abundant bitumens and oil seepages stored in vugs in a Lower-Triassic Daye formation(T_1d)marlite in Ni'erguan village in the Southern Guizhou Depression. However, the source of those oil seepages has no... There are abundant bitumens and oil seepages stored in vugs in a Lower-Triassic Daye formation(T_1d)marlite in Ni'erguan village in the Southern Guizhou Depression. However, the source of those oil seepages has not been determined to date. Multiple suites of source rocks of different ages exist in the depression. Both the oil seepages and potential source rocks have undergone complicated secondary alterations, which have added to the difficulty of an oil-source correlation. For example, the main source rock, a Lower-Cambrian Niutitang Formation"(∈_1n) mudstone, is over mature, and other potential source rocks, both from the Permian and the Triassic, are still in the oil window. In addition, the T_1d oil seepages underwent a large amount of biodegradation. To minimize the influence of biodegradation and thermal maturation, special methods were employed in this oil-source correlation study. These methods included catalytic hydropyrolysis, to release covalently bound biomarkers from the over mature"kerogen of ∈_1n mudstone, sequential extraction, to obtain chloroform bitumen A and chloroform bitumen C from the T_1d marlite, and anhydrous pyrolysis, to release pyrolysates from the kerogen of T_1d marlite. Using the methods above, the biomarkers and n-alkanes releasedfrom the oil samples and source rocks were analysed by GC–MS and GC-C-IRMS. The oil-source correlation indicated that the T_1d oil seepage primarily originated from"the ∈_1n mudstone and was partially mixed with oil generated from the T_1d marlite. Furthermore, the seepage also demonstrated that the above methods were effective for the complicated oil-source correlation in the Southern Guizhou Depression. 展开更多
关键词 Oil seepage Biomarker Carbon isotopic composition Catalytic hydropyrolysis Oil-source correlation
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Study on oil–source correlation by analyzing organic geochemistry characteristics: a case study of the Upper Triassic Yanchang Formation in the south of Ordos Basin, China 被引量:5
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作者 Delu Li Rongxi Li +6 位作者 Baoping Wang Zhi Liu Xiaoli Wu Futian Liu Bangsheng Zhao Jinghua Cheng Wenbin Kang 《Acta Geochimica》 EI CAS CSCD 2016年第4期408-420,共13页
In the south of the Ordos Basin, the oil source of the Upper Triassic Yanchang Formation is confused all the time, which affects further exploration. In this study, oil sources from the oil layers of Ch6, Ch8 and Ch9 ... In the south of the Ordos Basin, the oil source of the Upper Triassic Yanchang Formation is confused all the time, which affects further exploration. In this study, oil sources from the oil layers of Ch6, Ch8 and Ch9 are all analyzed and confirmed. Through their carbon isotope value and biomarkers, characteristics of crude oils from the Yanchang Formation are analyzed. Then, the oil–source relation is discussed, with the source rocks' features.Finally, the oil–source relation is calculated through cluster analysis. It is believed that the oils from the Yanchang Formation deposit in a similar redox environment, with weak oxidation–weak reduction, and have all entered maturity stage. Ch9 crude oil is more mature than crude oils from Ch6 and Ch8, and has more advanced plants and fewer algae. Gas chromatography(GC) and gas chromatography–mass spectrometry(GC–MS) analysis show that crude oils from Ch6 and Ch8 may come from Ch7, and Ch9 crude oil may not. Cluster analysis displays that crude oils from Ch6 and Ch8 have closer squared Euclidean distance with Ch7 source rocks than Ch9 crude oil does,indicating crude oils from Ch6 and Ch8 stem from Ch7 source rocks. And Ch9 crude oil has rather close squared Euclidean distance with Ch9 source rocks, illustrating Ch9 crude oil may be from Ch9 source rocks. This research may provide the theoretical basis for the next exploration deploy in the south of Ordos Basin. 展开更多
关键词 Carbon isotope correlation - Cluster analysis Basin Introduction Biomarker Oil-source Yanchang Formation - Ordos
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