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Comparison of the Absolute Adsorption of CH_4, n-C_4H_(10), and CO_2 on Shale

机译:比较CH_4,N-C_4H_(10)和SHALE上的CO_2的绝对吸附

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摘要

Comprehensive knowledge of the absolute adsorption of light hydrocarbons and CO2 is significant for shale reservoir assessment and CO2 stimulation optimization. In this work, excess adsorption isotherms are first obtained for CH4, n-C4H10, and CO2 on typical shale. The simplified local density (SLD) theory is then used to obtain the adsorption-phase density for CH4, n-C4H10, and CO2 in organic pores, which is then employed for absolute adsorption calculation. The absolute adsorption of CH4, n-C4H10, and CO2 is compared to prove the potential of CO2 for shale hydrocarbon recovery as well as CO2 sequestration in shale reservoirs. The results show that CH4, n-C4H10, and CO2 can form adsorption layers and result in a much higher adsorbed phase density than that at the pore center. Based on the SLD theory, C4H10 shows the highest adsorbed density on the shale surface than CO2 and CH4 at all pressure ranges. In addition, absolute adsorption is higher than the excess values in line with the previous molecular simulation methods. Absolute adsorption is calculated in the order of n-C4H10 CO2 CH4, indicating the suitability of CO2 for CH4 recovery but also that it may not be feasible for recovering heavier hydrocarbons, i.e., n-C4H10. This study provides insights into the mechanism of shale resources recovery using CO2 method, which is theoretically crucial for shale resource assessment and production optimization.
机译:综合了解光碳氢化合物和CO2的绝对吸附对于页岩储层评估和CO2刺激优化是显着的。在这项工作中,首先在典型的页岩上获得过量的吸附等温线,以CH4,N-C4H10和CO2获得。然后使用简化的局部密度(SLD)理论在有机孔中获得CH4,N-C4H10和CO 2的吸附相密度,然后用于绝对吸附计算。比较CH4,N-C4H10和CO 2的绝对吸附,以证明SALE储层的二氧化碳的电位以及页岩储层中的CO2封存。结果表明,CH4,N-C4H10和CO 2可以形成吸附层,并导致比孔中心的吸附相密度高得多。基于SLD理论,C4H10显示出在所有压力范围内的SLE表面上的最高吸附密度。此外,绝对吸附高于先前的分子模拟方法的过量值。绝对吸附是按N-C4H10> CO 2> CH 4的顺序计算的,表明CO 2适用于CH4恢复,但是对于回收较重的烃,即N-C4H10可能是不可行的。本研究提供了利用CO2方法对页岩资源恢复机制的见解,从理论上对页岩资源评估和生产优化是至关重要的。

著录项

  • 来源
    《Energy & fuels》 |2020年第4期|4466-4473|共8页
  • 作者单位

    Xian Shiyou Univ Sch Petr Engn Xian 710065 Shaanxi Peoples R China|Chengdu Univ Technol State Key Lab Oil & Gas Reservoir Geol & Exploita Chengdu 610059 Peoples R China;

    China Univ Petr East China Key Lab Unconvent Oil & Gas Dev Minist Educ Qingdao 266580 Peoples R China|China Univ Petr East China Sch Petr Engn Qingdao 266580 Shandong Peoples R China;

    Shaanxi Gas Grp Co Ltd Xian 710016 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:24:54

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