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Effect of pore structure on methane sorption potential of shales

机译:孔隙结构对页岩甲烷吸附潜力的影响

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Samples from the lower Paleozoic marine shale and Mesozoic continental shale in the west of middle Yangtze region were taken to investigate the effect of pore structure characteristics on the methane sorption of shale using field emission scanning electron microscope (FE-SEM), low pressure N2isotherm analysis and high pressure methane sorption analysis. A mass of organic matter pores (mostly with pore diameter less than 50 nm) have been found in the high thermal evolution marine shale rich in organic matter. The positive correlation between TOC, N2BET surface areas and sorption capacity in shale indicate that micro-porosity associated with organic matter is the key factor controlling methane sorption capacity of high thermal maturity shale rich in organic matter. The development of organic matter pores was limited in the organically lean marine shale and continental shale due to the lowerTOCcontent and lower thermal maturity respectively, and their reservoir space is composed of inorganic matter pores in 30 nm to 4.5 μm diameter. Providing bigger specific surface area for methane sorption, the pores within or between clay particles is an important factor to affect methane sorption capacity. With the increase of thermal maturity, the major pore system of shale reservoir changes from inorganic matter pores to organic matter pores, favorable for the improvement of methane sorption capacity of shale.
机译:利用场发射扫描电子显微镜(FE-SEM),低压N2等温线分析法,从扬子中西部地区下古生界海相页岩和中生代陆相页岩样品中研究了孔隙结构特征对页岩甲烷吸附的影响。和高压甲烷吸附分析。在富含有机物的高热演化海相页岩中发现了大量的有机物孔隙(大多数孔隙直径小于50 nm)。页岩中TOC,N2BET表面积与吸附能力之间的正相关关系表明,与有机质相关的微孔性是控制富含有机质的高成熟度页岩甲烷吸附能力的关键因素。有机物稀薄的海相页岩和陆相页岩中的有机质孔的发育受到限制,这分别是由于较低的TOC含量和较低的热成熟度,并且它们的储集空间由直径为30 nm至4.5μm的无机质孔组成。粘土颗粒内部或之间的孔隙为甲烷吸附提供了更大的比表面积,是影响甲烷吸附能力的重要因素。随着热成熟度的提高,页岩储层的主要孔隙系统由无机物孔隙变为有机物孔隙,有利于提高页岩的甲烷吸附能力。

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