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Separation of H-2 and CO2 Containing Mixtures with Mixed Matrix Membranes Based on Layered Materials

机译:基于层状材料的混合基质膜分离H-2和CO2混合物

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摘要

Some membrane separation processes are gradually taking over conventional processes such as distillation, evaporation or crystallization as the technology progresses from bench-scale tests to large-scale prototypes. However, membranes for H-2 and CO2 separation constitute a daring technology still under development. This overview focuses on mixed matrix membranes (MMMs), a special type of membranes in which a filler is dispersed in a polymer matrix, as a successful strategy to improve their permeability-selectivity performance while keeping the polymer processability. In particular, among all the possible fillers for MMMs, layered materials (porous zeolites and titanosilicates and graphite derivatives) are discussed in detail due to the several advantages they offer regarding selective microporosity, crystallinity and, what is most important, high specific surface area and aspect ratio. In fact, a selective and as thin as possible, i.e. with high aspect ratio, filler would help to develop high performance MMMs.
机译:随着技术从实验室规模的测试发展到大规模的原型,某些膜分离工艺正在逐步取代传统工艺,例如蒸馏,蒸发或结晶。但是,用于H-2和CO2分离的膜构成了一项仍在开发中的大胆技术。本概述着重介绍混合基质膜(MMMs),这是一种将填料分散在聚合物基质中的特殊类型的膜,是在保持聚合物可加工性的同时提高其渗透选择性的一种成功策略。特别是,在所有可能用于MMM的填料中,由于层状材料(多孔沸石,钛硅酸盐和石墨衍生物)在选择性微孔率,结晶度以及最重要的是高比表面积和高比重方面具有多种优势,因此对其进行了详细讨论。长宽比。实际上,选择并尽可能地薄,即具有高的长宽比的填充物将有助于开发高性能的MMM。

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