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首页> 外文期刊>Journal of nanoscience and nanotechnology >Micron-Nano Pore Structures and Microscopic Pore Distribution of Oil Shale in the Shahejie Formation of the Dongying Depression, Bohai Bay Basin, Using the Argon-Scanning Electron Microscope Method
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Micron-Nano Pore Structures and Microscopic Pore Distribution of Oil Shale in the Shahejie Formation of the Dongying Depression, Bohai Bay Basin, Using the Argon-Scanning Electron Microscope Method

机译:Micron-Nano孔隙结构和微观孔隙的油页岩在渤海湾盆地的沙河杰形成,采用氩扫描电子显微镜法

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摘要

To investigate the pore structure of shale oil reservoirs, seven organic-rich shales from the Shahejie Formation in the Dongying Depression were studied by rock pyrolysis analysis, X-ray diffraction analysis and scanning electron microscopy with argon ion beam polishing. The proportionsof the different types of pores at different scales, the statistical relationships between the mineral contents and pore development, and the development of pores in the mineral laminae combination were discussed. The results demonstrated that the nanometer to micron pore structures were dividedinto intraparticle pores, interparticle pores, intercrystalline pores, organic pores, microfissures and diagenetic contraction fractures. Interparticle pores and intraparticle pores are both essential components of the sample pores. The original residual pores are mainly small pores and mesopores,while the secondary dissolution pores are primarily mesopores and macropores. For different pore sizes, there are small surface pore contributions of diagenetic contraction fractures, microfissures, intercrystalline pores, and organic pores. The carbonate minerals content controls the oilstorage capacity of shale by dominating the development of the various pore types, while the clay mineral bands content can affect the permeability of shale by influencing the development of large-scale microfissures. In the laminae development sample, surface pore development is closely relatedto the sedimentary mineral microcircle, which consists of a falling semicycle and a rising semicircle. The total surface porosity, including microfissures, diagenetic contraction fractures, interparticle pores and intraparticle pores, mainly developed at the intersection of the rising semicircleand the falling semicircle, and this development corresponds to the highest level of a cycle. In summary, interparticle pores and intraparticle pores are the main components of pores developed in low thermal maturity shale and shale laminae where their heterogeneity is influenced by mineralcomposition and laminae microcircles.
机译:为了研究页岩油储层的孔隙结构,采用岩石热解分析、X射线衍射分析和氩离子束抛光扫描电镜对东营凹陷沙河街组7种富含有机质的页岩进行了研究。讨论了不同尺度上不同类型孔隙的比例、矿物含量与孔隙发育之间的统计关系,以及矿物薄片组合中孔隙的发育。结果表明,孔隙结构分为粒内孔隙、粒间孔隙、晶间孔隙、有机孔隙、微裂隙和成岩收缩裂隙。粒间孔和粒内孔都是样品孔的基本组成部分。原始残余孔隙主要为小孔隙和中孔,次生溶蚀孔隙主要为中孔和大孔。对于不同的孔隙大小,成岩收缩裂缝、微裂隙、晶间孔隙和有机孔隙对表面孔隙的贡献较小。碳酸盐矿物含量通过控制各种孔隙类型的发育来控制页岩的储油能力,而粘土矿物带含量通过影响大型微裂缝的发育来影响页岩的渗透率。在薄层发育样品中,表面孔隙发育与沉积矿物微环密切相关,沉积矿物微环由一个下降的半圆和一个上升的半圆组成。地表总孔隙度,包括微裂隙、成岩收缩裂缝、粒间孔隙和粒内孔隙,主要发育在上升半圆和下降半圆的交汇处,这种发育对应于一个旋回的最高水平。综上所述,粒间孔隙和粒内孔隙是低热成熟页岩和页岩薄层中发育的孔隙的主要组成部分,其非均质性受矿物成分和薄层微圈的影响。

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