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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Crystallization and assembling of FAU nanozeolites on porous ceramic supports for zeolite membrane synthesis
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Crystallization and assembling of FAU nanozeolites on porous ceramic supports for zeolite membrane synthesis

机译:FAU纳米沸石在多孔陶瓷载体上的结晶和组装,用于沸石膜的合成

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In this study, a novel route for preparing nanocrystalline porous FAU layers s stably supported on porous alpha-Al2O3 tubular substrates is reported. A highly reactive sodium hydroxide rich hydrogel was used to promote the nucleation process on the support surface. After 24 h of treatment at near ambient condition, a heavily nucleated quasi-solid gel layer containing nanozeolite precursor species was first formed on the support surface. This matrix was used as starting material for the synthesis of nanozeolite-based membranes. The support coated with the extensively nucleated gel phase was isolated and cured at higher temperature in different conditions. A rapid and diffuse crystallization was observed by treating the gel matrix with a synthesis solution of lower alkalinity, leading to the formation of a dense nano crystalline FAU layer firmly adhered to the substrate surface. The FAU layers (Si/Al ratio of ca. 2) have a thickness of ca. 2 mu m and are constituted by closely packed, well intergrown nanocrystals (crystallite dimension of ca. 20-30 nm). The results of this study indicate that supersaturation as well as the elevate amount of sodium ions synergistically contribute to induce the assembling of soluble aluminosilicate species on the support surface and to effectively promote the heterogeneous nucleation process. (C) 2016 Elsevier Inc. All rights reserved.
机译:在这项研究中,报告了一种新颖的制备稳定支撑在多孔α-Al2O3管状基底上的纳米晶多孔FAU层的方法。使用高反应性的富含氢氧化钠的水凝胶来促进载体表面上的成核过程。在接近环境条件下处理24小时后,首先在载体表面上形成了含有纳米沸石前体物质的高度成核的准固体凝胶层。该基质用作合成基于纳米沸石的膜的起始材料。分离涂覆有广泛成核的凝胶相的载体,并在较高温度下在不同条件下固化。通过用较低碱度的合成溶液处理凝胶基质,观察到快速且扩散的结晶,导致形成牢固粘附在基材表面上的致密纳米晶体FAU层。 FAU层(Si / Al之比约为2)的厚度约为。 2微米,由紧密堆积的,良好生长的纳米晶体(晶体尺寸约为20-30 nm)构成。这项研究的结果表明,过饱和以及钠离子含量的升高协同作用有助于诱导载体表面可溶性铝硅酸盐物质的组装,并有效地促进了异相成核过程。 (C)2016 Elsevier Inc.保留所有权利。

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