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首页> 外文期刊>AAPG Bulletin >Impacts of volumetric strain on CO2 sequestration in coals and enhanced CH4 recovery
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Impacts of volumetric strain on CO2 sequestration in coals and enhanced CH4 recovery

机译:体积应变对煤中CO 2固存和提高CH 4回收率的影响

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摘要

Sequestration of CO2 into deep, unminable coal seams is an attractive option to reduce atmospheric emissions. However, coal seams commonly have low initial permeability, and CO2 adsorption causes the coal matrix to swell, which further reduces the permeability and may result in inefficient injection. We investigate numerically the impacts of coal swelling on coal permeability and, thus, CO2 injection efficiency with constraints determined by experimental adsorption-associated volumetric strain measurements on three western Canadian coals. Our results show that injecting pure CO2 markedly reduces permeability through time to the extent that it is not a feasible sequestration technology for almost all coals. However, injection of a gas mixture of N2 and CO2 (flue gas) markedly improved CO2 injection efficiency while mildly reducing CO2 sequestration capacity. The study also suggests that different geological settings and mechanical properties of specific coal seams strongly control coal seam permeability during gas injection and, thus, viability of CO2 sequestration.
机译:将二氧化碳封存到深不可开采的煤层中是减少大气排放的一种有吸引力的选择。然而,煤层通常具有较低的初始渗透率,并且CO 2吸附导致煤基质膨胀,这进一步降低了渗透率并可能导致注入效率低下。我们用数值方法研究了煤溶胀对煤渗透性的影响,并因此研究了加拿大西部三种煤的实验吸附相关的体积应变测量所确定的约束条件下的煤注气效率。我们的结果表明,注入纯CO2会随着时间的推移显着降低渗透率,以至于对于几乎所有煤来说,这都不是可行的隔离技术。但是,注入N2和CO2的混合气体(烟气)可显着提高CO2的注入效率,同时适度降低CO2的封存能力。该研究还表明,特定煤层的不同地质环境和力学特性在注气过程中强烈地控制着煤层的渗透性,从而控制了二氧化碳封存的可行性。

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