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首页> 外文期刊>AIChE Journal >Hybrid Membrane Materials Comprising Organic Polymers with Rigid Dispersed Phases
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Hybrid Membrane Materials Comprising Organic Polymers with Rigid Dispersed Phases

机译:包含刚性分散相的有机聚合物的混合膜材料

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摘要

Dispersing highly selective rigid "inserts"such as zeolites and carbons into polymers can produce novel membrane materials with improved gas mixture perrnselectivity.Rigid inserts frequently cause the permeability in an "interphase"surrounding individual inserts to differ markedly from the intrinsic permeability of the matrix polymer.While existing theoretical models describe perrnselectivity reasonably well,they fail to predict the absolute permeabilities for individual components in such hybrid media.In fact,the degree of deviation from the simple model predictions provides insight into the detailed properties of the interphase,which has been neglected in previous analyses of these hybrid materials.Extension of an existing model provides a framework to analyze gas permeation properties of model systems with rigid molecular sieve inserts in glassy matrices.Inhibited segmental motion due to surface attachment and matrix contraction at the interface during preparation of these materials is hypothesized as the key cause of the observed behavior.
机译:将高选择性的刚性“插入物”(例如沸石和碳)分散到聚合物中可以生产出具有改善的气体混合物渗透选择性的新型膜材料。刚性插入物经常导致“中间相”周围的渗透率与单个插入物明显不同,与基质聚合物的固有渗透率明显不同尽管现有的理论模型可以很好地描述渗透选择性,但它们无法预测此类混合介质中各个组分的绝对渗透率。实际上,与简单模型预测的偏差程度可以洞悉相间的详细特性,在先前对这些杂化材料的分析中被忽略了。现有模型的扩展提供了一个框架,用于分析玻璃基质中带有刚性分子筛插入物的模型系统的气体渗透特性。在制备过程中,由于界面处的表面附着和基质收缩而抑制了节段运动这些材料被假设为观察到的行为的主要原因。

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