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湖相烃源岩中的火山—热液深源物质与油气生成耦合关系研究进展 被引量:12
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作者 焦鑫 柳益群 +4 位作者 周鼎武 李红 孟子圆 赵敏茹 杨奕曜 《古地理学报》 CAS CSCD 北大核心 2021年第4期789-809,共21页
陆内湖相烃源岩系是中国含油气盆地广泛发育的一类组分复杂且富含有机质的细粒沉积岩。随着非常规油气资源需求量日益增加,该岩系被作为致密油或页岩油层系受到广泛关注。然而,其极细的粒度增加了精细岩石学、矿物学研究难度,使它长期... 陆内湖相烃源岩系是中国含油气盆地广泛发育的一类组分复杂且富含有机质的细粒沉积岩。随着非常规油气资源需求量日益增加,该岩系被作为致密油或页岩油层系受到广泛关注。然而,其极细的粒度增加了精细岩石学、矿物学研究难度,使它长期被简单视为陆源沉积岩。研究发现,该岩系中发育丰富的火山喷发及热液喷流产生的深源物质,并与油气的生成和富集表现出了极强的耦合关系。因此,探索深源物质如何参与烃源岩形成并影响油气生成亟待深入研究。作者详细总结并探讨了国内外近年来关于湖相烃源岩成因以及火山—热液活动带来的深源物质与油气形成关系的现阶段新发现与认识。并结合笔者研究团队基于新疆三塘湖盆地二叠系芦草沟组烃源岩的新发现,采用精细的岩石学、矿物学方法,结合无机和有机地球化学等方法,初步开展了该耦合关系的机理研究。认为火山—热液深源物质参与了烃源岩的沉积与成岩作用,并与正常湖相沉积物共同影响着油气的形成。建议重新认识湖相烃源岩的物质组成,从而拓展陆相生油理论,同时为同类型非常规油气资源勘探开发提供理论指导。 展开更多
关键词 火山—热液沉积 深源物质 湖相烃源岩 油气生成 非常规油气
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Geology and geochemistry of Huanggangliang stratabound skarn deposit in Inner Mongolia,China 被引量:2
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作者 WANG Changming 《Global Geology》 2010年第2期61-69,共9页
Over the recent three decades, exploration of a large-size Sn-Fe polymetallic ore deposit at the Huanggangliang, the Da Hinggan Mountains, Inner Mongolia, China, has been largely focused on the premise that the minera... Over the recent three decades, exploration of a large-size Sn-Fe polymetallic ore deposit at the Huanggangliang, the Da Hinggan Mountains, Inner Mongolia, China, has been largely focused on the premise that the mineralization represents epigenetic magmatic hydrothermal ore deposit in genetic connection with the Mesozoic magmatism. The Huanggangliang Sn-Fe polymetallic ore deposits occurred in Permian strata, with silt- stone/marble of the Zhesi Formation and spilite/andesite/tuff of the Dashizhai Formation. The characteristics of geological and geochemical data demonstrated that sedimentary hydrothermal mineralization occurred during the basin evolution at the Permian, rather than representing epigenetie magmatic hydrothermal genesis with the following evidences. The ore-bearing skarus are stratiform with underlying metasedimentary rocks and overlying volcanic sedimentary rocks. Sedimentary hydrothermal textures and structures are observed in the stratabound ore-bearing skarn such as bedded-laminated skarn and magnetite ores with small-size folding or soft deforma- tion, synsedimentary breccia of skarn and magnetite ores and concentric shell structure of magnetite ores. So the stratabound ore-bearing skarns associated with magnetite ore and micro-disseminated tin, are peculiar examples of exhalite. The REE contents of the stratabound ore-bearing skarns display ∑LREE-rich (36.91×10^-6) but EHREE-depletion (6. 42 ×10^-6) , with positive Eu anomaly (Eu/Eu * 1.28) and negative Ce anomaly (Ce/ Ce * 0.88 ) , which is totally different from REE pattern of the Huanggang magmatic rocks( with ∑REE 277.73 ×10^-6, ELREE 220.24 ×10^-6, ∑HREE 57.49 ×10^-6, Eu/Eu* 0.06, Ce/Ce* 1.52) , which is comparable with modern sea-floor hydrothermal fluid,sedimentary hydrothermal ore deposit and associated hydrothermal sedimentary rocks. Calcite samples with δ13CPDB from -5. 400 ‰ to -4. 397 ‰ and δ18SOSMOW from 9. 095 ‰ to 9. 364 ‰ in the stratabound ore-bearing skarns show sedimentary hydrothermal genesis of the Huanggangliang deposit. This proposition is useful not only for interpretation of the genesis of the Huanggangliang large Sn-Fe polymetallic ore deposit but also significant for mineral exploration in the area especially for finding large deposits caused by sedimentary exhalative mineralization processes. 展开更多
关键词 stratabound skarn exhalative genesis REE carbon isotope Huanggangliang ore deposit
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