首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Identification of Metal-Organic Framework Materials for Adsorption Separation of Rare Gases: Applicability of Ideal Adsorbed Solution Theory (IAST) and Effects of Inaccessible Framework Regions
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Identification of Metal-Organic Framework Materials for Adsorption Separation of Rare Gases: Applicability of Ideal Adsorbed Solution Theory (IAST) and Effects of Inaccessible Framework Regions

机译:用于稀有气体吸附分离的金属有机骨架材料的鉴定:理想吸附溶液理论(IAST)的适用性和难以接近的骨架区域的影响

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摘要

A collection of >3000 MOFs with experimentally confirmed structures were screened for performance in three binary separations: Ar/Kr, Kr/Xe, and Xe/Rn. 70 materials were selected for further analysis, and calculations were performed to account for inaccessible regions. Single component GCMC calculations were performed to parametrize IAST calculations on these 70 materials. An approach that avoids possible imprecision in IAST due to curve-fitting of single component isotherms is introduced. The precision of IAST for these gas pairs was confirmed with extensive binary GCMC calculations. For each binary separation, materials were identified with predicted performance that surpasses the state of the art. A significant number of materials were found to be "reverse selective" in the sense that a smaller gas species is preferably adsorbed over a larger species. The physical origin of this phenomenon is explained. The effect of temperature on separation performance was also examined.
机译:筛选了超过3000个具有实验确认结构的MOF,以进行三种二元分离的性能分析:Ar / Kr,Kr / Xe和Xe / Rn。选择了70种材料进行进一步分析,并进行了计算以说明无法进入的区域。对这70种材料进行了单组分GCMC计算,以参数化IAST计算。引入了一种避免由于单组分等温线的曲线拟合而可能导致IAST不精确的方法。这些气体对的IAST精度已通过大量的二元GCMC计算得到了证实。对于每个二元分离,鉴定出的材料的预测性能都超过了现有技术。发现大量材料是“反向选择性的”,因为较小的气体种类优选吸附在较大的种类上。解释了这种现象的物理原因。还检查了温度对分离性能的影响。

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