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MCM-22 Zeolite-Induced Synthesis of Thin Sodalite Zeolite Membranes

机译:MCM-22沸石诱导的薄钠沸石沸石膜的合成

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摘要

A novel strategy for synthesizing the high-performance thin and compact sodalite zeolite membrane over rough alpha-Al2O3 support was developed. The synthesis involved the deposition of a layer of flaky MCM-22 zeolite crystals over support and the subsequent hydrothermal crystallization of sodalite zeolite. It was identified that the sodalite zeolite membrane possessed a thickness of ca. 700 nm with almost no defect, and a water/ethanol separation factor higher than 10 000 at a permeation flux of 4.4 kg.m(-2).h(-1) could be achieved. A possible mechanism for the formation of high-performance sodalite zeolite membrane was also proposed, which involved first the decomposition of MCM-22 zeolite crystals into small fragments containing double six-membered rings (D6R) and subsequently the nucleation and crystallization of sodalite initiated by the D6R-containing species over the surface of support from the strongly alkali synthesis sol. The study showed that the predeposition of a layer of flaky MCM-22 zeolite crystals over the surface of support was crucial for the generation of thin and compact sodalite membranes, as it not only improved the surface flatness but also led to the in situ nucleation and crystallization of sodalite zeolite crystals. This method combines 2D-material film-forming technology with 3D-material film-forming technology, thus providing a new approach for preparing thin and defect-free membranes.
机译:开发了一种在粗糙的α-Al2O3载体上合成高性能薄和厚钠钠沸石膜的新策略。合成涉及沉积一层片状MCM-22沸石晶体在载体上和随后的钠盐沸石的水热结晶。鉴定钠钠沸石膜具有CA的厚度。 700nm几乎没有缺陷,并且可以实现在4.4kg.m(-2).h(-1)的渗透通量高于10 000的水/乙醇分离因子。还提出了形成高性能罗马石沸石膜的可能机制,其首先将MCM-22沸石晶体分解成含有双六元环(D6R)的小片段,随后甲状腺石渣的成核和结晶含D6R物种在强碱合成溶胶表面的载体表面上。该研究表明,在载体表面表面上的一层片状MCM-22沸石晶体对薄硅酸钠膜的产生至关重要,因为它不仅改善了表面平坦度,而且还导致原位成核和原位成核钠钠沸石晶体的结晶。该方法结合了具有3D材料成膜技术的2D-材料成膜技术,从而提供了一种制备薄和无缺陷膜的新方法。

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