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1.
通过场发射环境扫描电镜、低温氮气吸脱附实验、高分辨率背散射电子图像定量分析等技术方法,对渤海湾盆地东营凹陷沙河街组页岩油储层的微观孔隙类型、结构特征及孔隙分布进行了系统研究。结果表明:沙河街组页岩油储层微观孔隙类型多样,包括粒间孔、粒内孔、晶间孔、溶蚀孔和晶内孔5类孔隙。有利储集空间为孔径在100~3000nm的孔隙,以粒间孔、粒内孔和溶蚀孔为主。泥岩类和灰岩类孔隙形态包括细颈瓶状(墨水瓶状)和平行板状;白云岩类孔隙形态为平行板状,连通性最好。白云岩类定量面孔率最大且孔隙发育最好,其次为泥岩类,灰岩类较差。影响微观孔隙特征的主要因素包括矿物成分及含量、有机质生排烃和热液作用,其中黏土矿物和泥级颗粒有利于储层微孔发育,方解石的胶结作用和重结晶作用不利于孔隙发育。生排烃产生的有机酸和热液作用增进了次生孔隙的形成。  相似文献   

2.
储层孔隙特征和孔隙结构是影响页岩气赋存与储集的重要因素。为评价海陆过渡相高演化煤系页岩储层性质与页岩气储集性能,应用扫描电子显微镜、高压压汞、低温N2和 CO2气体吸附、微米CT扫描、核磁共振实验方法,对沁水盆地武乡区块上古生界煤系页岩气储层孔隙微观特征和孔隙结构进行了研究。结果表明,沁水盆地武乡区块上古生界煤系页岩样品中发育多种类型微观孔隙,常见粒间孔、粒内孔和微裂缝,有机质孔几乎不发育;武乡区块煤系页岩气储层样品孔隙总孔容分布在0.021 9~0.073 5 mL/g之间,平均值为0.039 9 mL/g,总比表面积主要分布在11.94~46.83 m2/g之间,平均为29.16 m2/g,其中介孔(2~50 nm)和微孔(<2 nm)是煤系页岩气储集的主要载体。煤系页岩中的高配位数孔隙数量越多,相应的孔容和孔比表面积越大,孔隙连通性越好;在孔隙数量和总孔容相差不大的前提下,山西组煤系页岩储层孔隙结构与连通性比太原组煤系页岩稍好。  相似文献   

3.
李博  于炳松  史淼 《矿物岩石》2019,39(1):92-101
黔西北下志留统五峰—龙马溪组是我国南方海相页岩气勘探的重要目的层,其孔隙类型除了与常规储层相似的粒间孔、粒内孔、溶蚀孔等孔隙外,还发育了大量的有机质孔。近年来,越来越多的研究发现,页岩气储层中有机质孔占有十分重要的地位。本次研究中发现页岩岩石样品中占主要体积的孔隙类型是中孔(2 nm~50 nm)占比44.16%~82.39%,其次是微孔(<2 nm)占比8.57%~41.23%,宏孔(>50 nm)最少,占比4.02%~16.41%;从场发射扫描电子显微镜照片中可以看出,许多宏孔、中孔有明显的挤压变形现象,说明岩石经历了较长时间的压实作用,并可能伴随着部分孔隙被其他矿物充填的过程。由回归分析可以看出:总有机碳(TOC)含量强烈影响微孔和中孔的发育和演化,尤其是对中孔的影响明显,TOC与这两种孔隙体积之间都存在着明显的正相关关系;石英对中孔发育有一定影响,但不如前者明显,同时石英与微孔之间存在一定的负相关关系;黏土矿物与中孔发育之间存在负相关关系;Ro与微孔、中孔占总孔隙体积的百分比有着良好的正相关关系,而与宏孔占总孔隙百分比有着良好的负相关关系。  相似文献   

4.
页岩的孔隙类型、结构对于页岩气资源评价与开采具有重要意义,为了进一步认识页岩孔隙结构特征及其演化规律,利用场发射扫描电镜、氮气吸附实验对黔西北骑龙村剖面五峰—龙马溪组黑色页岩微观孔隙类型、结构进行了研究,结果表明,研究区五峰—龙马溪组页岩气储层的储集空间类型多样,主要包含粒内孔、粒间孔、有机质孔和微裂缝。页岩孔隙以介孔为主,介孔是页岩气的主要储集空间;孔隙结构以墨水瓶状孔和平行板状孔为主。探讨了影响页岩孔隙发育的主要因素,有机碳含量、热演化程度和矿物成分含量均对页岩孔隙的发育有影响,而且并非单相性的,是相互制约的。研究剖面石英含量与微孔、中孔的发育程度呈良好的正相关关系,而与宏孔发育程度的相关性不明显;黏土矿物含量与微孔、中孔的发育程度的相关性不明显,而与宏孔的发育程度呈负相关关系;有机质孔隙正处在其发育高峰期,对于页岩孔隙具有重要贡献,且随成熟度增加而增加。  相似文献   

5.
为研究海相含煤地层页岩的微观孔隙特征,选取黔西北地区石炭系祥摆组页岩作为研究对象,利用扫描电镜(SEM)和液氮吸附实验研究孔隙特征,同时研究其分形特征,并探讨孔隙结构的影响因素。研究结果表明:研究区石炭系祥摆组页岩在扫描电镜下可观察到4类微观孔隙(粒内孔、粒间孔、有机质孔、微裂缝),其中微裂缝、有机质孔发育较丰富,具有较强的生成烃类气体能力和良好的储集性能;液氮吸附等温线在形态上呈反“S”形,表明中孔在微观孔隙中最为发育,滞后回线类型主要为H2型的细颈广体的墨水瓶孔;BJH总孔体积和BET比表面积值均较大,平均值分别为0.0155 cm3/g和13.20 m2/g,平均孔径为6.22 nm,纳米级微观孔隙大量发育,为烃类气体提供丰富的储集空间;页岩样品微观孔隙结构分形维数D较大,主体大于2.723 2,反映出孔隙结构复杂、非均质性较强;BET比表面积与TOC、石英含量呈一定的负相关性,与分形维数呈一定的正相关性;平均孔径值与石英含量正相关性较好,与分形维数负相关性较好,与黏土矿物含量呈一定的负相关性。石炭系祥摆组页岩微观孔隙的BET比表面积较大、平均孔径较小,微观孔隙结构较为复杂。  相似文献   

6.
徐祖新  郭少斌 《现代地质》2015,29(1):206-212
通过氩离子抛光-SEM技术,分析了中扬子地区震旦系陡山沱组页岩储层孔隙类型、孔隙形态、孔径和面孔率特征,探讨了这些孔隙的油气地质意义。研究认为,陡山沱组页岩储层发育有机质孔隙、粒间孔隙、粒内孔隙和微裂缝4种孔隙类型。页岩孔隙形态可分为不规则多边形孔、圆形或椭圆形孔、复杂网状孔、串珠状孔、长条形孔、线状孔6种类型,其中复杂网状孔的连通性最好,有利于压差传递,可提高页岩气的解吸效率和储层的渗透率。页岩孔径为10~2 000 nm,主体范围为20~200 nm,平均面孔率为1.4%~6.2%。不同类型的孔隙能够为页岩气的赋存提供不同尺度的储集空间,微裂缝和粒间孔隙对页岩气的运移最为有利。  相似文献   

7.
This study analyzed the characteristics and types of the Lower Silurian shale gas reservoirs in and around Sichuan Basin through field observations, slices, Ar-ion-beam milling, scanning electron microscopy, and x-ray diffraction analysis of 25 black shale outcrops and samples. Two main types of shale gas reservoirs were determined, i.e., fractures and pores. Fractures were classified into five categories, i.e., giant, large, medium, small, and micro, according to the features of the shale gas reservoirs, effect of fracture on gas accumulation, and fracture nature. Pore types include organic matter pores, mineral pores (mineral surface, intraparticle, interparticle, and corrosional pore), and nanofractures. The various fracture types, fracture scales, pore types, and pore sizes exert different controls over the gas storage and production capacity. Pores serve as a reservoir for gas storage and, the gas storage capacity can be determined using pores; fractures serve as pathways for gas migration, and gas production capacity can be determined using them.  相似文献   

8.
沁水盆地煤系地层页岩气储层特征及评价   总被引:3,自引:0,他引:3  
沁水盆地是我国重要的含煤盆地,不仅其煤炭及煤层气资源丰富,在上古生界石炭纪-二叠纪地层中还有大量页岩发育。而目前,针对该地区页岩地层的相关研究极少,该地区页岩气资源是否具有勘探开发潜力有待深入而细致的研究。本文以沁水盆地上古生界石炭系-二叠系海陆交互相页岩储层为研究对象,通过薄片鉴定、X线衍射分析、氩离子抛光扫描电镜分析、核磁共振、氦气吸附等实验方法,研究了富有机质页岩储层有机质含量、类型、成熟度等有机地化特征以及储集空间类型、物性、矿物组成、孔隙结构等储层特征。在此基础上,对研究区页岩储层的勘探开发潜力进行了评价。结果表明:沁水盆地石炭纪-二叠纪富有机质页岩储层中发育形态各异的不同类型孔隙及微裂缝。其中,矿物基质孔十分发育,主要包括有呈片状、三角形及不规则形态的粒间孔和晶间孔等;而有机质孔不发育,呈点状,偶见椭圆型。从孔隙结构上看,孔隙具有较大的比表面积,主要分布在2.84~6.44 m2/g,平均值为4.26 m2/g。平均孔径分布在3.64~10.34 nm,以中孔隙发育为主。从矿物组成来看,各矿物含量比例适中,黏土矿物含量较高,达到57.5%,有利于微孔隙发育和页岩气的吸附;以石英及长石为代表的脆性矿物含量较高,达到41.3%,易于后期压裂造缝。从有机地化特征来看,有机碳含量高,有机质类型以腐泥腐殖型为主,且受中生代异常地温场控制,有机质热成熟度高,有利于页岩气的生成和吸附存储。总体来说,虽然研究区石炭纪-二叠纪页岩储层埋深浅,但有机地化参数、矿物组成、孔隙发育及结构特征都有利于页岩生烃和页岩气储存,具有较大的勘探与开发潜力。  相似文献   

9.
页岩孔隙结构的表征是页岩气储层评价的基础性工作。钻取岩芯,采集鄂尔多斯盆地上三叠系延长组页岩。使用纳米CT观测10 μm3、20 μm3、30 μm3、39 μm3空间内页岩的孔隙结构,获取孔隙、喉道数量,以及连通性数据,重构孔隙结构三维模型。将孔隙结构抽象为球-棍物理模型,采用复杂网络理论建立关于孔隙结构连通性的结点-边数学模型。依据无标度网络的数学特性,使用Matlab软件生成10 μm3空间内孔隙连通性网络。引入网络连通熵的概念,用于计算不同空间范围内孔隙连通性网络的网络连通熵,评价孔隙结构的异质性。结果表明:10 μm3、20 μm3、39 μm3空间内孔隙连通性网络度分布符合幂律分布;30 μm3空间内孔隙连通性网络度分布符合指数分布;网络连通熵增加,孔隙和喉道网络的连通性减小。该方法可用于评价页岩孔隙的连通性,进而评价页岩气储层的孔渗特性。  相似文献   

10.
11.
In order to evaluate the shale microscopic pore characteristics more economically and effectively in limited circumstances, the pore characteristics of Longmaxi Formation in Pengshui area, Sichuan Basin, were qualitatively observed and analyzed with Scanning Electron Microscopy (SEM) and Field Emission Scanning Electron Microscopy (FESEM) with argon ion polishing method at the same time. Pore quantitative information were extracted from shale SEM and FESEM images with the help of a professional image analysis software IamgeJ2x, and combined with statistical methods, the whole pore size distribution as well as shale pore fractal dimension and the relevance between fractal dimension and organic matter content, mineral composition and pore adsorption capacity and the corresponding pore structure characteristics of Longmaxi Formation in Pengshui area were analyzed. The study shows that under SEM, there are mostly micro pores of Longmaxi Formation in Pengshui area. The main pore types include intergranular pore, clay mineral layer pore, intragranular pore and micro cracks, etc. Through argon ion polishing FESEM, there mainly develop nanoscale pores. The main pore types contain organic pore, inorganic mineral pore (pyrite intergranular pore, intragranular pore, clay mineral layer pore and intergranular pore, etc.) and micro cracks. The use of both of the two methords is more advantageous to qualitatively analyze shale pore. The whole pore size distribution of shale pore has four main peaks and the main distribution range is 3~10 nm, 10~40 nm, 100~400 nm, 1~4 μm, respectively. The shape factor of shale organic matter pore is distributed between 0.9~1 and inorganic mineral pore is distributed between 0.5~0.7. It shows that the organic matter pore is circular, nearly circular and inorganic mineral pore shape is triangle, polygon, slit shape and so on. The inorganic mineral pore shape is relativly complex because of the different pore causes. The shale pore of Longmaxi Formation in Pengshui area conforms to the fractal features, and the organic pore fractal dimension is smaller than that of inorganic mineral pore, showing that the organic matter pore structure is relatively simple. There is a certain relevance between fractal dimension and organic matter content, mineral composition, porosity, and adsorbed gas content. With the increase of the organic matter content, the shale pore fractal dimension increase, the pore structure characteristics become complicated. With the shale pore fractal dimension increasing, the biggest gas adsorption quantity increases and the ability of pore adsorption strengthens.  相似文献   

12.
四川盆地东部下古生界海相页岩是一套有利的页岩气储层,通过野外泥页岩剖面及井下岩芯观察、电镜扫描、常规物性及微孔隙结构测试、等温吸附实验等技术方法,对页岩气储层空间特征进行了研究分析,发现下古生界页岩的孔隙可分为三大类六小类,裂缝可分为两大类五小类,具有颗粒细小、致密、大孔发育少、微孔发育多、具有一定孔隙度、渗透率小、喉道细、连通性差的特征。页岩总孔体积主体是由孔径小于200nm的微孔隙提供的,纳米级孔隙和微裂缝是页岩主要的储集空间,页岩有机质孔对于孔隙度具有一定贡献,是富有机质页岩的主要微孔隙类型。页岩的微孔隙结构决定了页岩气的赋存状态和流动方式,孔缝发育程度在一定程度上决定了页岩的含气性及其渗透性能,但大型或巨型裂缝的发育,将给页岩气的有效保存带来破坏。有机质(干酪根和沥青质)和黏土颗粒内的微孔隙表面是吸附态页岩气赋存的主要空间,但有机质孔提供了大部分具吸附性的孔比表面,是控制页岩吸附性能的主要因素,而黏土矿物的作用是次要的。  相似文献   

13.
富有机质泥页岩孔隙系统演化特征及其模式的研究有助于完善页岩油气微纳米储层地质理论,进一步揭示页岩油气富集成藏机理,并促进页岩油气综合地质评价与勘探开发.通过综述富有机质泥页岩孔隙系统特征及发育演化影响因素,简述了泥页岩复杂孔隙系统研究发展历程,分析了自然成熟序列泥页岩和模拟序列泥页岩孔隙系统演化特征,总结了国内外富有机...  相似文献   

14.
为了深入研究四川盆地上三叠统须五段陆相页岩储层微观孔隙结构,运用氩离子抛光扫描电镜(SEM)、低温氮气吸脱附以及相关地球化学分析实验等技术对该地区页岩储层的微观孔隙结构进行了研究,并对控制其纳米孔隙发育的主要因素进行了探讨。结果表明:四川盆地须五段页岩微观孔隙可分为有机孔和无机孔(粒间孔、粒内孔、晶间孔、溶蚀孔),微裂缝可分为构造微裂缝、有机质生排烃缝和成岩收缩缝等;孔隙结构类型以两端连通的圆柱孔、平行平面间的缝状孔和呈锥形的管孔为主;微观孔隙孔径分布区间大(1~80 nm),峰值主要集中于2~8 nm之间;以中孔(2~50 nm)为主,所占比例为6021%(或以黏土矿物孔为主,所占比例为4462%);页岩的有机质丰度和黏土矿物含量是控制纳米孔隙发育的主要因素。  相似文献   

15.
The Songliao Basin is one of the most important petroliferous basins in northern China. With a recent gradual decline in conventional oil production in the basin, the exploration and development of unconventional resources are becoming increasingly urgent. The Qingshankou Formation consists of typical Upper Cretaceous continental strata, and represents a promising and practical replacement resource for shale oil in the Songliao Basin. Previous studies have shown that low-mature to mature Qingshankou shale mainly preserves type Ⅰ and type Ⅱ1 organic matter, with relatively high total organic carbon(TOC) content. It is estimated that there is a great potential to explore for shale oil resources in the Qingshankou Formation in this basin. However, not enough systematic research has been conducted on pore characteristics and their main controlling factors in this lacustrine shale reservoir. In this study, 19 Qingshankou shales from two wells drilled in the study area were tested and analyzed for mineral composition, pore distribution and feature evolution using Xray diffraction(XRD), scanning electron microscopy(SEM), low-pressure nitrogen gas adsorption(N2-GA), and thermal simulation experiments. The XRD results show that clay, quartz, and feldspar are the dominant mineral constituents of Qingshankou shale. The clay minerals are mostly illite/smectite mixed layers with a mean content of 83.5%, followed by illite, chlorite, and kaolinite. There are abundant deposits of clay-rich shale in the Qingshankou Formation in the study area, within which many mineral and organic matter pores were observed using SEM. Mineral pores contribute the most to shale porosity;specifically, clay mineral pores and carbonate pores comprise most of the mineral pores in the shale. Among the three types of organic matter pores, type B is more dominant the other two. Pores with diameters greater than 10 nm supply the main pore volume;most are half-open slits and wedge-shaped pores. The total pore volume had no obvious linear relationship with TOC content, but had some degree of positive correlation with the content of quartz + feldspar and clay minerals respectively. However, it was negatively correlated with carbonate mineral content. The specific surface area of the pores is negatively related to TOC content, average pore diameter, and carbonate mineral content. Moreover, it had a somewhat positive correlation with clay mineral content and no clear linear relationship with the content of quartz + feldspar. With increases in maturity, there was also an increase in the number of carbonate mineral dissolution pores and organic matter pores, average pore diameter, and pore volume, whereas there was a decrease in specific surface area of the pores. Generally, the Qingshankou shale is at a low-mature to mature stage with a TOC content of more than 1.0%, and could be as thick as 250 m in the study area. Pores with diameters of more than 10 nm are well-developed in the shale. This research illustrates that there are favorable conditions for shale oil occurrence and enrichment in the Qingshankou shale in the study area.  相似文献   

16.
《China Geology》2019,2(4):541-556
In this paper, substantial domestic and foreign research results of microscopic shale reservoir space were systemically reviewed, the research history consisting of simple observation and qualitative classification, quantitative research, the combination of qualitative and quantitative research successively as well as the characteristics of each research stage were summarized. In addition, the current problems existing in the characterization methods of shale reservoir space were also analyzed. Furthermore, based on massive actual detection of typical core samples obtained from more than 50 global shale gas wells and relevant practical experience, a comprehensive characterization method of combining qualitative with the semi-quantitative characterization was put forward. In detail, the indicators of the qualitative characterization include pore combination type and organic-matter microscopic morphology type, while the core elements of the semi-quantitative characterization include the percentage of the organic-matter area and the plane porosity of the pores of different types. Based on the reference of the naming and classification of rocks, the three-end-member diagram method was used to characterize microscopic shale reservoir space. This is achieved by plotting the three end-member diagram of 3 kinds of first-order critical reservoir spaces, i.e., organic-matter pores, matrix pores, and micro-fractures, in order to intuitively present the features of the microscopic pore combination. Meanwhile, statistic histograms of organic-matter microscopic morphology type and the plane porosity of different types of pores were adopted to characterize the development degree of second-order pores quantitatively. By this comprehensive characterization method, the importance of both pore combination and the microscopic morphology of organic matter were emphasized, revealing the control of organic-matter microscopic morphology over the organic-matter pores. What is more, high-resolution FE-SEM was adopted to obtain semi-quantitative statistics results. In this way, the features of pore development and pore combination were quantified, not only reflecting the types and storage capacity of the microscopic shale reservoir space, but also presenting the hydrocarbon-generating potential of organic matter in shale. Therefore, the results of this research are capable of providing in-depth microscopic information for the assessment and exploration and development of shale gas resources.  相似文献   

17.
鄂尔多斯盆地长73亚段的页岩层系有机质含量、矿物含量变化大,发育凝灰岩夹层,具有较强的非均质性,不同岩相的孔隙结构差异及主控因素尚不明确。综合多种分析技术手段,对鄂尔多斯盆地南部长73页岩层系的岩相进行系统划分,对比不同岩相的孔隙结构及物性差异,探讨其有效孔隙网络及主控因素。根据粒度、TOC和矿物成分将长73细粒岩分为8种岩相类型,其中高有机质硅质页岩、凝灰岩及高有机质黏土质页岩三种岩相所占比例较高。长73页岩中有机质丰度高(平均20.04%),类型以Ⅰ型为主,处于低熟到成熟阶段。储集空间根据产状可分为基质孔隙(粒间孔、粒内孔、晶间孔、特大溶蚀孔)、有机质相关孔隙(有机质孔、有机质边缘孔隙)、裂缝(构造缝、成岩缝、晶面裂缝、粒边缝)。各岩相等温吸附曲线特征以IV型为主,迟滞回线以H3型为主。宏孔是储集游离油的有效孔隙,储集性能受岩相、有机质含量及矿物组成控制。凝灰岩孔隙度、渗透率及宏孔比孔容最高,其次为高有机质硅质页岩和高有机质黏土质页岩,而低有机质页岩宏孔比孔容最小,介孔比孔容大。页岩中有机质、黄铁矿含量与宏孔比孔容呈正相关,凝灰岩中石英含量与宏孔比孔容也呈正相关。研究成果可为长73亚段页岩油甜点评价及预测提供地质依据。  相似文献   

18.
周琦 《地质与资源》2019,28(1):30-34
陆相断陷盆地的致密油气成藏条件复杂,储层性质变化多,规模开发的难度很大。根据渤海湾盆地的地质、地球化学、实验分析及生产测试等资料,对比国内外拗陷盆地致密油气藏特点,综合分析断陷盆地致密油气的成藏条件和成藏特征.研究表明断陷盆地生烃洼陷中富有机质泥页岩厚度大,有机质丰度高,成熟度演化范围宽;泥页岩成分复杂或与不同岩性的致密储层频繁互层,形成了丰富的自生自储或近源聚集的致密油气资源.致密油气藏依据油藏储层岩性类型分为致密碎屑岩类油藏、致密碳酸盐岩类油藏、致密火山岩类油藏、泥页岩类油藏4类.致密碳酸盐岩类油藏成藏条件最好,最易于开发.断裂构造附近泥页岩层系的构造裂缝发育区域,也具有良好的成藏条件,是重要的勘探方向.  相似文献   

19.
页岩微观孔隙结构是影响页岩气储层储集能力的重要因素。为评价川南地区下寒武统筇竹寺组页岩性质,基于井下 岩心样品、钻井资料,运用普通扫描电镜和氩离子抛光-场发射扫描电镜观测、Image J2x软件分析、低温CO2和N2 吸附、 高压压汞实验方法,对川南地区筇竹寺组页岩气微观孔隙成因类型、孔隙结构特征及其影响因素进行了研究。研究结果表 明,川南地区下寒武统筇竹寺组页岩孔隙度为0.25%~5.80%,平均为2.49%;发育多种成因类型微观孔隙,以粒间孔为 主,粒内孔、有机质孔和微裂缝次之,页岩微观孔隙总面孔率为3.58%~5.92%;川南地区筇竹寺组页岩总孔容为(2.86~ 12.55)×10-3 mL/g,总比表面积为2.727~21.992 m2/g,孔径主要分布于0.30~1.00 nm、2.5~4.7 nm和55~70 nm这三个区间,微 孔(<2 nm)和介孔(2~50 nm)是筇竹寺组页岩气储集空间的主体,孔隙结构形态主要为圆孔、楔形孔、平板狭缝型孔和混合 型孔结构。页岩孔隙度及总比表面积与TOC、脆性矿物含量呈正相关关系,页岩微孔孔容及比表面积与TOC呈正相关关 系,页岩孔隙度、总孔容及总比表面积与R0、粘土矿物含量呈负相关关系。  相似文献   

20.
有机质孔是高成熟页岩储层中吸附气和游离气赋存的主要储集空间类型。中国南方海相页岩地层经历了多期构造改造,滑脱构造广泛发育。为了认识剪切作用对页岩有机质孔微观结构和吸附能力的影响,以张家界三岔地区下寒武统牛蹄塘组页岩为例,通过大量扫描电镜图像观测统计,对比分析了滑脱带页岩、邻近滑脱带页岩和远离滑脱带页岩有机质孔的发育特征,同时对这三类样品进行了甲烷等温吸附测试。研究结果表明,有机质内孔发育在有机质内部,孔径一般<20 nm;位于有机质与矿物接触边缘的复合孔孔径整体大于有机质内孔,主要发育在滑脱带页岩中包裹有矿物碎片的有机质中。受剪切作用影响,这两类有机质孔均沿一定优势方向发生形变,形态更趋于狭长且定向性增强;同时页岩甲烷吸附能力变差,从滑脱带向远离滑脱带方向这种影响逐渐减弱。剪切作用对页岩储集性能和含气性具有重要控制作用,对认识复杂构造区页岩气保存条件和富集规律具有重要意义。   相似文献   

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