首页> 外文期刊>Journal of Petroleum Science & Engineering >Comprehensive characteristics of pore structure and factors influencing micropore development in the Laochang mining area, eastern Yunnan, China
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Comprehensive characteristics of pore structure and factors influencing micropore development in the Laochang mining area, eastern Yunnan, China

机译:云南东部雷昌矿区微孔开发的孔隙结构综合特征及影响。

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Characterization of coal pore structure plays an important role in the exploration and development of coalbed methane. Results from corrected high-pressure mercury injection porosimetry, low-temperature liquid nitrogen adsorption, and low temperature carbon dioxide adsorption were used in combination with fractal theory. This study aims to gain insight into full-scale pore size distribution and to discuss factors influencing micropore development in relation to physical properties of coal samples. The results show that coal compressibility in the study area is between 0.79-1.27 x 10(-10) m(2)/N, the maximum cumulative mercury intrusion volume was 75%-85% of that before correction. Pore shapes are mainly cone pores and parallel plate-shaped pores. The total pore volume (PV) ranges from 0.071-0.084 cm(3)/g. Micropores, especially those with diameters less than 1.5 nm, account for more than 90% of PV, providing storage space for most of the adsorbed gas. The effect of coalification on pore development is complex, there is no obvious relationship between micropore volume, specific surface area (SSA) and coal rank; however, a negative correlation exists between micropore volume, SSA and volatile yield. Moisture and fixed carbon content can increase micropore volume and SSA, while ash yield and minerals tend to reduce micropore volume and SSA.
机译:煤孔结构的表征在煤层气勘探开发中起着重要作用。校正高压汞注入孔隙率,低温液氮吸附和低温二氧化碳吸附的结果与分形理论结合使用。本研究旨在深入了解满量程孔径分布,并讨论影响微孔发育的因素与煤样的物理性质。结果表明,研究区域的煤压缩性在0.79-1.27×10( - 10)m(2)/ n之间,最大累积汞入侵体积为75%-85%在校正之前。孔形状主要是锥体孔和平行板状孔隙。总孔体积(PV)范围为0.071-0.084cm(3)/ g。微孔,尤其是直径小于1.5nm的微孔,占PV的90%以上,为大多数吸附气体提供存储空间。聚会对孔隙发育的影响是复杂的,微孔体积,特定表面积(SSA)和煤炭等级之间没有明显的关系;然而,微孔体积,SSA和挥发性产量之间存在负相关。水分和固定碳含量可以增加微孔体积和SSA,而灰分产量和矿物质往往会减少微孔体积和SSA。

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