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Microporous mixed matrix (ZeoTIPS) membranes.

机译:微孔混合基质(ZeoTIPS)膜。

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Recent work in the areas of zeolite membranes and mixed matrix membranes have inspired the development of isotropic microporous mixed matrix (ZeoTIPS) membranes, consisting of high-selectivity zeolite particles suspended in a cellular, microporous polymer matrix formed by thermally induced phase separation (TIPS). The particles form nanoporous connections between the cellular voids in the matrix, and can carry out separations independent of the choice of polymer matrix. Existing water purification and gas separation membranes have a variety of drawbacks, including durability, chemical instabilities, cost, flux, and formation difficulty. ZeoTIPS membranes address each of these drawbacks while yielding high selectivity.;Included in this work are theoretical predictions of ZeoTIPS membrane performance along with models and experiments designed to gain fundamental knowledge that can be used to develop these membranes. This dissertation discusses how zeolite particles influence the processes of droplet coarsening and pore formation in thermally induced phase separation by disrupting flow fields as well as changing local compositions and viscosities. Additionally, a mathematical model is presented, leading to understanding of the ZeoTIPS formation process.;Polymers used in these membranes must have acceptable interactions with the zeolite particles and desired mechanical properties, but must also be able to undergo thermally induced phase separation with a non-hazardous diluent under reasonable processing conditions. Furthermore, processing conditions such as cooling rate are of vast importance in forming ZeoTIPS membranes, but the required conditions can be difficult to obtain. Thus, development of these membranes has required extensive experimental research to determine feasible polymer-diluent systems for forming the microporous matrix and to develop methods of formation.
机译:沸石膜和混合基质膜领域的最新工作激发了各向同性微孔混合基质(ZeoTIPS)膜的发展,该膜由悬浮在由热诱导相分离(TIPS)形成的多孔微孔聚合物基质中的高选择性沸石颗粒组成。颗粒在基质中的细胞空隙之间形成纳米孔连接,并且可以进行分离,而与聚合物基质的选择无关。现有的水净化和气体分离膜具有多种缺点,包括耐久性,化学不稳定性,成本,通量和形成困难。 ZeoTIPS膜解决了所有这些缺点,同时产生了很高的选择性。该工作包括ZeoTIPS膜性能的理论预测以及旨在获得可用于开发这些膜的基础知识的模型和实验。本文讨论了沸石颗粒如何通过破坏流场以及改变局部组成和粘度来影响热致相分离过程中液滴粗化和孔形成的过程。此外,还提出了一个数学模型,从而使人们了解了ZeoTIPS的形成过程。这些膜中使用的聚合物必须与沸石颗粒具有可接受的相互作用并具有所需的机械性能,但还必须能够通过热诱导相分离而不会-在合理加工条件下的危险稀释剂。此外,加工条件如冷却速率对于形成ZeoTIPS膜极为重要,但是可能难以获得所需的条件。因此,这些膜的开发需要广泛的实验研究,以确定可行的聚合物-稀释剂体系以形成微孔基质并开发形成方法。

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