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The Effect of Aquifer Condition on Methane Recovery for CO2 Injection in Coalbed

机译:含水层对煤层中二氧化碳注射液甲烷回收的影响

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The purpose of this paper is to investigate the influence of various aquifer conditions on the CO2 displacement efficiency and methane recovery in the coal seam. The movement of CO2 in cleat is sensitively dependent upon aquifer condition as well as sorption characteristics of coal, since the pressure of coalseam is determined based on the position of aquifer. In this study, methane recovery for CO2 injection process was analyzed regarding the contacting position and strength of the aquifer. We ascertained that both methane recovery and CO2 sequestration are inefficient when the hydraulic connection between overlying aquifer and coal seam is strong. This is because buoyancy effect causes gas leakage to the overlying aquifer although CO2 displacing methane has a greater affinity compring to methane. Although the vertical permeability of underlying aquifer is great, the effect of methane recovery and CO2 sequestration are efficiently successful during CO2-ECBM process because the leakage of both the amount of injected CO2 and desorbed methane is negligible. Although the injected CO2 is effetively sequestrated in the edge aquifer case, ECBM recovery shows irregular efficiency in part due to the asymmetrical flow of the injected CO2. It is considered that the design of proper strategies regarding CO2 movement means a lot to the aspect of methane recovery and CO2 sequestration to maximize economic profit.
机译:本文的目的是探讨各种含水层条件对煤层中CO2位移效率和甲烷回收的影响。由于含水层的位置确定了煤中的含水层和吸附特性,CO 2在凝固中的运动敏感地敏感地依赖于含水层状态以及煤的吸附特性。在该研究中,分析了关于含水层的接触位置和强度的CO 2注射过程的甲烷回收。当覆盖含水层和煤层之间的液压连接强劲时,我们确定甲烷回收和二氧化碳封存效率低。这是因为浮力效应导致覆盖含水层的气体泄漏,尽管CO 2位移甲烷具有更大的对甲烷的亲和力。虽然潜水层的垂直渗透性很大,但在CO2-ECBM过程中,甲烷回收和CO2螯合的效果是有效的,因为注射的CO 2和解吸甲烷的量都可以忽略不计。尽管在边缘含水层的情况下,注入的CO 2在边缘含水层的情况下,ECBM恢复显示出由于注入的CO2的不对称流动而部分地显示出不正常的效率。考虑到有关CO2运动的适当策略的设计意味着甲烷回收和CO2封存方面的批次,以最大化经济利润。

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