赵中玲. 煤层储存CO2能力的地应力响应特征[J]. 煤矿安全, 2021, 52(8): 28-32,38.
    引用本文: 赵中玲. 煤层储存CO2能力的地应力响应特征[J]. 煤矿安全, 2021, 52(8): 28-32,38.
    ZHAO Zhongling. In-situ stress response characteristics of CO2 storage capacity in coal seam[J]. Safety in Coal Mines, 2021, 52(8): 28-32,38.
    Citation: ZHAO Zhongling. In-situ stress response characteristics of CO2 storage capacity in coal seam[J]. Safety in Coal Mines, 2021, 52(8): 28-32,38.

    煤层储存CO2能力的地应力响应特征

    In-situ stress response characteristics of CO2 storage capacity in coal seam

    • 摘要: 准确估算煤层中CO2的吸附量对CO2封存技术具有重要意义,特别是煤层埋深对CO2吸附能力的影响;通过设计开发加载煤体吸附实验系统,测试了5种煤样在不同加载条件下的吸附等温线;研究结果表明:煤体在加载/卸载后将存在残余应力,且残余应力随加载力的增大而增大;随着煤体加载应力的增大,孔隙率呈幂指数减小,而CO2吸附量呈线性减小,即地应力增大1 MPa(埋深大约增加40 m),煤体对CO2的吸附能力大约降低0.43%最大吸附量。

       

      Abstract: Accurate estimation of CO2 adsorption capacity in coal seam is a great significance to CO2 storage technology, especially the influence of coal seam depth on CO2 adsorption capacity. Through the design and development of loading coal adsorption experimental system, the adsorption isotherms of five kinds of coal samples under different loading conditions were tested. The results show that there will be residual stress in coal after loading/unloading, and the residual stress increases with the increase of loading force. With the increase of loading stress, the porosity decreases exponentially, while the CO2 adsorption capacity decreases linearly. That is to say, the in-situ stress increases by 1 MPa(the buried depth increases by about 40 m), and the CO2 adsorption capacity in coal decreases by about 0.43% of the maximum adsorption capacity.

       

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