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Pore Structure Characterization of Shale Using Gas Physisorption: Effect of Chemical Compositions

机译:利用气体物理吸附法表征页岩孔隙结构特征:化学成分的影响

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摘要

In this study, the pore structure characteristics of Canadian Horn River basin shales with various chemical compositions were evaluated using gas physisorption analyses. The samples used in this research were obtained from two different regions (shallow and deep regions) of rock cuttings during the drilling of the shale gas field located in Horn River basin. The pore size, specific surface area, total pore volume, micropore surface area, and micropore volume of the shale samples were measured using both nitrogen and CO 2 . The results indicated that the pore size was not a function of chemical composition, while distinct trends were observed for other macroscopic and microscopic pore-related properties. In particular, the greatest specific surface area and total pore volume were observed for silica-rich carbonate shales, while clay-rich siliceous shales exhibited the greatest micropore volume and micropore surface area. The trends clearly suggested that macroscopic and microscopic pore-related properties of the Canadian Horn River basin shales were closely related to their chemical composition. Furthermore, a stronger correlation was observed between the quartz content and the micropore-related physical properties of shales (i.e., the micropore surface area and micropore volume) in comparison to other properties.
机译:在这项研究中,使用气体物理吸附分析评估了加拿大霍恩河盆地页岩具有各种化学组成的孔隙结构特征。在霍恩河盆地的页岩气田钻探过程中,本研究使用的样品是从两个不同区域(浅层和深层)的岩屑中获得的。页岩样品的孔径,比表面积,总孔径,微孔表面积和微孔体积均使用氮气和CO 2进行了测量。结果表明,孔径不是化学组成的函数,而其他宏观和微观孔隙相关特性则观察到明显的趋势。特别地,对于富含二氧化硅的碳酸盐页岩观察到最大的比表面积和总孔体积,而富含粘土的硅质页岩表现出最大的微孔体积和微孔表面积。这种趋势清楚地表明,加拿大霍恩河盆地页岩的宏观和微观孔隙相关特性与其化学成分密切相关。此外,与其他性质相比,在石英含量与页岩的微孔相关的物理性质(即,微孔表面积和微孔体积)之间观察到更强的相关性。

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