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Mixed-Matrix Membranes containing an Azine-Linked Covalent Organic Framework: Influence of the polymeric matrix on Post-Combustion CO 2 -capture

机译:含氮杂键共价有机骨架的混合基质膜:聚合物基质对燃烧后CO 2捕获的影响

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摘要

The use of an azine-linked covalent organic framework (ACOF-1) as filler in mixed-matrix membranes (MMMs) has been studied for the separation of CO2 from N2. To better understand the mechanisms that govern separation in complex composites, MMMs were prepared with different loadings of ACOF-1 and three different polymers as continuous phase: low flux-mid selectivity Matrimid®, mid flux-high selectivity Polyactive™ and high flux-low selectivity 6FDA:DAM. The homogeneous distribution of ACOF-1 together with the good adhesion between the ACOF-1 particles and the polymer matrices were confirmed by scanning electron microscopy. In mixed-gas CO2/N2 separation a clear influence of the polymer used was observed on the performance of the composite membranes. While for Matrimid® and 6FDA:DAM an overall enhancement of the polymer's separation properties could be achieved, in case of Polyactive™ penetration of the more flexible polymer into the COF porosity resulted in a decreased membrane permeability. The best improvement was obtained for Matrimid®-based MMMs, for which a selectivity increase from 29 to 35, together with an enhancement in permeability from 9.5 to 17.7 Barrer for 16wt% COF loading, was observed. Our results demonstrate that the combination of the filler-polymeric matrix pair chosen is crucial. For a given filler the polymer performance improvement strongly depends on the polymeric matrix selected, where a good match between the discontinuous and continuous phase, both in the terms of compatibility and gas separation properties, is necessary to optimize membrane performance.
机译:已经研究了使用嗪键合共价有机骨架(ACOF-1)作为混合基质膜(MMM)中的填料来分离N2中的CO2的方法。为了更好地理解控制复杂复合材料中分离的机理,制备了具有不同负载量的ACOF-1和三种不同聚合物作为连续相的MMM:低通量-中选择性Matrimid®,中通量-高选择性Polyactive™和高通量-低选择性6FDA:DAM。通过扫描电子显微镜确认了ACOF-1的均匀分布以及ACOF-1颗粒与聚合物基质之间的良好粘附性。在混合气CO2 / N2分离中,观察到所用聚合物对复合膜性能的明显影响。而对于Matrimid®和6FDA:DAM,可以实现聚合物分离性能的整体增强,而在Polyactive™的情况下,更柔软的聚合物渗透到COF孔隙中会导致膜渗透性降低。对于基于Matrimid®的MMM,获得了最佳的改进,对于16wt%的COF负载,其选择性从29增加到35,并且渗透率从9.5 Barrer增加到17.7 Barrer。我们的结果表明,所选的填料-聚合物基质对的组合至关重要。对于给定的填料,聚合物性能的提高在很大程度上取决于所选的聚合物基体,在不连续相和连续相之间的良好匹配(在相容性和气体分离特性方面)是优化膜性能所必需的。

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