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Mixed-linker zeolitic imidazolate framework mixed-matrix membranes for aggressive CO2 separation from natural gas

机译:混合接头沸石咪唑盐骨架混合基质膜,可从天然气中积极分离二氧化碳

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Zeolitic imidazolate framework (ZIF) materials are a promising subclass of metal-organic frameworks (MOF) for gas separations. However, due to the deleterious effects of gate-opening phenomena associated with organic linker rotation near the limiting pore apertures of ZIFs, there have been few demonstrations of improved gas separation properties over pure polymer membranes when utilizing ZIF materials in composite membranes for CO2-based gas separations. Here, we report a study of composite ZlF/polymer membranes, containing mixed-linker ZIF materials with ZIF-8 crystal topologies but composed of different organic linker compositions. Characterization of the mixed-linker ZIFs shows that the mixed linker approach offers control over the porosity and pore size distribution of the materials, as determined from nitrogen physisorption and Horvath-Kawazoe analysis. Single gas permeation measurements on mixed-matrix membranes reveal that inclusion of mixed-linker ZIFs yields membranes with better ideal CO2/ CH4 selectivity than membranes containing ZIF-8. This improvement is shown to likely occur from enhancement in the diffusion selectivity of the membranes associated with controlling the pore size distribution of the ZIF filler. Mixed-gas permeation experiments show that membranes with mixed-linker ZIFs display an effective plasticization resistance that is not typical of the pure polymeric matrix. Overall, we demonstrate that mixed-linker ZIFs can improve the gas separation properties in composite membranes and may be applicable to aggressive CO2 concentrations in natural gas feeds.
机译:沸石咪唑酸盐骨架(ZIF)材料是用于气体分离的金属有机骨架(MOF)的一个有前途的子类。然而,由于在ZIFs的有限孔口附近与有机接头旋转相关的开门现象的有害影响,当在复合膜中使用ZIF材料用于基于CO2的膜时,很少有证明优于纯聚合物膜的气体分离性能气体分离。在这里,我们报告了一种复合ZIF /聚合物膜的研究,该膜包含具有ZIF-8晶体拓扑结构但由不同的有机接头组成的混合接头ZIF材料。混合接头ZIF的表征表明,混合接头方法可控制材料的孔隙度和孔径分布,这是根据氮的物理吸附和Horvath-Kawazoe分析确定的。在混合基质膜上进行的单气体渗透测量表明,与含有ZIF-8的膜相比,包含混合连接基的ZIF产生的膜具有更好的理想CO2 / CH4选择性。已显示出这种改善可能是由于与控制ZIF填料的孔径分布有关的膜的扩散选择性的提高所致。混合气体渗透实验表明,具有混合接头ZIF的膜显示出有效的抗塑化性,这不是纯聚合物基质所特有的。总体而言,我们证明了混合连接基ZIF可以改善复合膜中的气体分离性能,并且可能适用于天然气进料中激进的CO2浓度。

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