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Desorption hysteresis of CO2 and CH4 in different coals with cyclic desorption experiments

机译:循环解吸试验不同煤中CO2和CH4的解吸滞后

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The gas adsorption/desorption experiments in coal are important contents in the research of coalbed methane (CBM) recovery and CO2 sequestration. However, the curve of gas desorption often lags behind the adsorption curve, which is called desorption hysteresis. Desorption hysteresis is a common phenomenon that has a significant impact on the prediction of CBM recovery. In this paper, the characteristics of CH4 and CO2 desorption were examined using an experimental apparatus. The parameters of the Langmuir model were obtained from the desorption data. It can be concluded that the desorption isotherm of an initial pressure chosen according to the in situ coal seam pressure is more appropriate for the prediction of CBM recovery. The ratio of desorption hysteresis for CO2 is weaker than that for CH4 in different ranks coal. The desorption hysteresis is more likely to happen in low rank coal. The results of pore structure show that the average pore width of coal sample after CO2 cyclic desorption experiments is changed. The pore deformation is not the primary factor that causes desorption hysteresis, and the solution phase of gas could be another factor. The findings of this study can help for better understanding of the process of CBM recovery, the production of CBM and the CO2 storage in coal seams.
机译:煤中的气体吸附/解吸试验是煤层气(CBM)回收和CO2封存研究中的重要内容。然而,气体解吸的曲线通常在吸附曲线后面滞后,其被称为解吸滞后。解吸滞后是一种常见的现象,对CBM恢复的预测具有显着影响。在本文中,使用实验装置检查CH4和CO2解吸的特性。从解吸数据获得Langmuir模型的参数。可以得出结论,根据原位煤层压力选择的初始压力的解吸等温度更适合于预测CBM恢复。二氧化碳的解吸滞后之比比不同等级煤中的CH 4较弱。解吸滞后更可能发生在低级煤中。孔隙结构的结果表明,在CO2环状解吸实验后,煤样的平均孔宽度变化。孔隙变形不是导致解吸滞后的主要因素,并且气体的溶液阶段可能是另一个因素。本研究的结果可以帮助更好地了解CBM回收过程,CBM的生产和煤层中的CO2储存。

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