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Ultem ?? /ZIF-8 Mixed Matrix Membranes for Gas Separation: Transport and Physical Properties

机译:Ultem ?? / ZIF-8混合基质的气体分离膜:传输和物理性质

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摘要

Mixed matrix membranes are promising options for improving gas separation processes. Zeolitic imidazolate frameworks (ZIFs) have a porous structure similar to conventional zeolites, being capable in principle of separating gases based on their differences in kinetic diameter while offering the advantage of having a partial organic character. This partial organic nature improves the compatibility between the sieve and the polymer, and a combination of the mentioned characteristics makes these hybrid materials interesting for the preparation of mixed matrix gas separation membranes. In this context the present work reports the preparation of Ultem ?? /ZIF-8 mixed matrix membranes and their permeabilities to pure CO 2 , N 2 and CH 4 gases. A significant increase in permeability with increase in CO 2 /N 2 selectivity was observed for the mixed matrix systems as compared to the properties of the neat Ultem ?? . Sorption results allowed to speculate that the ZIF-8 framework is not completely stable dimensionally, what influences the separation process by allowing gases with higher kinetic diameter than its nominal aperture to be sorbed and to diffuse through the crystal. Sorption and diffusion selectivities indicate that the higher separation performance of the mixed matrix membranes is governed by the diffusion process associated with the influence of gas molecule's geometry.
机译:混合基质膜是改善气体分离过程的有前途的选择。沸石咪唑酸酯骨架(ZIF)具有类似于常规沸石的多孔结构,原则上能够基于它们的动力学直径差异来分离气体,同时具有部分有机特征的优点。这种部分有机性质改善了筛子与聚合物之间的相容性,并且上述特性的组合使这些杂化材料对于制备混合基质气体分离膜非常有趣。在这种情况下,本工作报告了Ultem的制备方法。 / ZIF-8混合基质膜及其在纯CO 2,N 2和CH 4气体中的渗透性。与纯净的Ultem ??的性能相比,混合基质系统的渗透率随CO 2 / N 2选择性的增加而显着增加。 。吸附结果可以推测ZIF-8骨架在尺寸上不是完全稳定的,它通过允许动力学直径大于其标称孔径的气体被吸收并扩散通过晶体,从而影响了分离过程。吸附和扩散选择性表明,混合基质膜的较高分离性能受与气体分子几何形状影响相关的扩散过程支配。

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