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Exploration potential of shale oil in Chang7 Member, Upper Triassic Yanchang Formation, Ordos Basin, NW China

机译:西北鄂尔多斯盆地上三叠统延长组长7段页岩油勘探潜力

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The geological conditions and exploration potential of shale oil in Chang7 Member, Upper Triassic Yanchang Formation, Ordos Basin, were studied from various aspects, including petrographic characteristics, storage ability, geochemical features, friability and mobility of hydrocarbon in the source rock, etc. A classification criterion of lithofacies for Upper Triassic Chang 7 source rock in Ordos Basin were established based on the correlation between lithology, organic carbon content and logging parameters, from which, the spatial distribution and development scale of two types of shale, black shale and dark massive mudstone, have been predicted. Qualitative and quantitative characterization of the micro-structures of Chang7 source rock using state-of-the-art microscopic facilities including argon ion milling – field emission scanning electron microscopy (FESEM), focused ion beam scanning electron microscopy (FIB-SEM) and Nano-CT reveal that the dominant pore types in Chang7 source rock are intra-granular pores and inter-granular pores; the pores and throats in the two kinds of lithofacies are both nano-scale, and the dark massive mudstone has better physical properties than the black shale. The Chang7 shale oil resources and mineability were evaluated based on the parameters from geochemical experiments on the source rock, including pyrolysis S1, chloroform bitumen ‘A’, TOC and thermal maturity, free hydrocarbon content, as well as geo-mechanical properties such as brittle mineral content and development of fractures. With large scale of favorable lithofacies, good storage ability and abundant hydrocarbon, Chang7 Member has the material basis for shale oil occurrence and accumulation, in addition, the shale oil there has accumulated greatly and has favorable properties for flowing in nano-scale pores and throats. All these show that Chang7 Member has high potential for shale oil exploration, in which, the dark massive mudstone is a more favorable target for shale oil exploration under the present technical conditions.
机译:从鄂尔多斯盆地上三叠统延长组长7段页岩油的地质条件和勘探潜力,从岩石学特征,储集能力,地球化学特征,烃源岩的脆性和迁移率等多个方面进行了研究。根据岩性,有机碳含量与测井参数之间的相关性,建立了鄂尔多斯盆地上三叠统长7烃源岩岩相分类标准,从中确定了黑页岩和暗块两种页岩的空间分布和发育规模。泥岩,已被预测。使用最先进的显微镜设备,包括氩离子铣削–场发射扫描电子显微镜(FESEM),聚焦离子束扫描电子显微镜(FIB-SEM)和纳米技术,对Chang7烃源岩的微观结构进行定性和定量表征-CT表明,长7烃源岩的主要孔隙类型为粒内孔和粒间孔。两种岩相的孔隙和喉道均为纳米级,黑色块状泥岩的物理性质要优于黑色页岩。基于源岩的地球化学实验参数,对长7页岩油资源和可开采性进行了评估,包括热解S1,氯仿沥青“ A”,TOC和热成熟度,游离烃含量以及诸如脆性的地球力学特性。矿物含量和裂缝的发展。长七段具有较大的有利岩相,良好的储藏能力和丰富的烃类资源,为页岩油的发生和聚集提供了物质基础,此外,那里的页岩油积累量很大,对在纳米级的孔和喉中流动具有有利的特性。 。所有这些表明,长7段具有较高的页岩油勘探潜力,其中暗块状泥岩是目前技术条件下页岩油勘探的更有利目标。

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