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Segregation effects in adsorption of CO2-containing mixtures and their consequences for separation selectivities in cage-type zeolites

机译:吸附对含CO2混合物的偏析作用及其对笼型沸石分离选择性的影响

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摘要

For separation of CO2 from gaseous mixtures with CH4,N2,or Ar,cage-type zeolites such as DDR,CHA,LTA,and ERI are of practical interest.These zeolites consist of cages separated by narrow windows and the selectivity of separation of CO2 is dictated by both adsorption and diffusion characteristics.For adsorption of CO2/CH4 mixtures,Grand Canonical Monte Carlo(GCMC)simulations show that the window regions of cage-type zeolites have a significantly higher proportion of CO2 than within the cages.Due to the segregated nature of mixture adsorption,the ideal adsorbed solution theory is unable to predict the mixture loadings accurately.For adsorption of CO2/N2,CO2/Ar,and N2/CH4 segregation effects are also present but their impact is far less severe than for CO2/CH4 mixtures.For CO2-bearing mixtures,the preponderance of CO2 in the window regions has important consequences for mixture diffusion.Molecular dynamics(MD)simulations for self-diffusion in binary mixtures demonstrate that the CO2 slows down the partner molecules far more than anticipated by the Maxwell-Stefan diffusion theory using pure component data inputs.The GCMC and MD simulation results also lead to the conclusion that DDR and CHA yield the highest permeation selectivities for membrane-based separation of CO2/CH4,CO2/N2,and CO2/Ar mixtures.For N2/CH4 separation,DDR and ERI are the best choices.
机译:为了从CH4,N2或Ar的气体混合物中分离出CO2,笼式沸石(例如DDR,CHA,LTA和ERI)具有实用价值。吸附和扩散特性决定了CO2 / CH4混合物的吸附。大正则蒙特卡洛模拟(GCMC)表明,笼型沸石的窗口区域的CO2比例明显高于笼内沸石。混合物吸附的分离性质,理想的吸附溶液理论无法准确预测混合物的负载量。对于CO2 / N2,CO2 / Ar和N2 / CH4的吸附,也存在偏析作用,但其影响远不如对CO2严重/ CH4混合物。对于含CO2的混合物,窗口区域中CO2的优势对混合物扩散具有重要影响。二元混合物中自扩散的分子动力学(MD)模拟表明,CO2的速度变慢使用纯组分数据输入,使伴侣分子的降解远超出Maxwell-Stefan扩散理论所预期的范围.GCMC和MD模拟结果还得出以下结论:DDR和CHA对基于膜的CO2 / CH4分离具有最高的渗透选择性,CO2 / N2和CO2 / Ar混合物。对于N2 / CH4分离,DDR和ERI是最佳选择。

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