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首页> 外文期刊>Journal of Petroleum Science & Engineering >Origin and significance of organic-matter pores in Upper Ordovician Wufeng-Lower Silurian Longmaxi mudstones, Sichuan Basin
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Origin and significance of organic-matter pores in Upper Ordovician Wufeng-Lower Silurian Longmaxi mudstones, Sichuan Basin

机译:四川盆地上奥陶凡司武力井下硅料龙米星岩岩有机物毛孔的起源和意义

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The types of organic-matter (OM) pores in shale gas reservoirs were comprehensively investigated from the Wufeng-Longmaxi (W-L) mudstones in the Changning gas field, southern Sichuan Basin, China. The aim of this research is to provide the origin and significance of OM pores development in the nanometer-scaled pore structures within shale rocks. To understand the contribution of OM pores development to the W-L mudstones, the thin-section, OM extract from bulk cores, mineralogy, pore size distribution, and image analyses by scanning electron microscopy (SEM) and atomic force microscopy (AFM) were comprehensively carried out. Combining SEM photographs and AFM observations, two types of OM pores were identified, including structural OM pores and non-structural spongy OM pores. Through organic petrology analyses, the structural OM pores evolve from telalginites mainly sourced from phytoplankton and acritarch, while the non-structural spongy OM pores are derived from bacteria, benthic algae and certain graptolites. Three basic lithofacies were observed in the first member of the W-L shales, based on the results of the low-pressure N-2 adsorption. We did not find any complex interaction between mineralogy and OM pores evolution. However, siliceous shales generate the most amount of bitumen which is the main OM pores producer, and the rigid siliceous particles can make the shelter of bigger OM pores. OM pores connectivity therefore increases within the siliceous shales. OM pores development, especially structural OM pores, has a crucial effect on shale gas exploitation.
机译:南川盆地南部南部的武力 - 龙曼(W-L)Mudstones全面研究了页岩气藏的有机物质(OM)毛孔的类型。该研究的目的是提供鄂木岩石结构中OM孔隙结构的起源和意义。要了解OM孔隙发育对WL Mudstone的贡献,通过扫描电子显微镜(SEM)和原子力显微镜(AFM)的块芯,矿物学,孔尺寸分布和图像分析的薄膜OM提取物并进行了全面携带出去。结合SEM照片和AFM观察,鉴定了两种类型的OM孔,包括结构OM孔和非结构海绵肿瘤OM孔。通过有机岩石学分析,结构OM孔隙从浮游植物和AcRITARCH中的Telalgonites演变,而非结构海绵肿瘤源自细菌,底栖藻类和某些赤龙石。基于低压N-2吸附的结果,在W-L Shales的第一个成员中观察到三个基本的锂缺失。我们没有发现矿物学之间的复杂互动和肿瘤演变。然而,Siliceous Shales产生最多量的沥青,这是主孔生产者,刚性的硅质颗粒可以制造更大的肿瘤毛孔。因此,孔隙连接在硅质页岩内增加。 OM孔隙开发,特别是结构肿瘤,对页岩气剥削具有重要影响。

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