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Halloysite nanotube-based electrospun ceramic nanofibre mat: a novel support for zeolite membranes

机译:基于埃洛石纳米管的静电纺陶瓷纳米纤维垫:一种新型的沸石膜载体

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摘要

Some key parameters of supports such as porosity, pore shape and size are of great importance for fabrication and performance of zeolite membranes. In this study, we fabricated millimetre-thick, self-standing electrospun ceramic nanofibre mats and employed them as a novel support for zeolite membranes. The nanofibre mats were prepared by electrospinning a halloysite nanotubes/polyvinyl pyrrolidone composite followed by a programmed sintering process. The interwoven nanofibre mats possess up to 80% porosity, narrow pore size distribution, low pore tortuosity and highly interconnected pore structure. Compared with the commercial α-Al2O3 supports prepared by powder compaction and sintering, the halloysite nanotube-based mats (HNMs) show higher flux, better adsorption of zeolite seeds, adhesion of zeolite membranes and lower Al leaching. Four types of zeolite membranes supported on HNMs have been successfully synthesized with either in situ crystallization or a secondary growth method, demonstrating good universality of HNMs for supporting zeolite membranes.
机译:载体的一些关键参数,例如孔隙率,孔的形状和大小,对于沸石膜的制造和性能非常重要。在这项研究中,我们制作了毫米厚的自立式静电纺陶瓷纳米纤维垫,并将其用作沸石膜的新型支撑物。通过静电纺制埃洛石纳米管/聚乙烯吡咯烷酮复合材料,然后进行程序设计的烧结工艺,可以制备纳米纤维垫。交织的纳米纤维垫具有高达80%的孔隙率,狭窄的孔径分布,低曲折度和高度互连的孔结构。与通过粉末压实和烧结制备的商用α-Al2O3载体相比,基于埃洛石纳米管的垫(HNMs)具有更高的通量,更好的沸石种子吸附性,沸石膜的附着力和更低的Al浸出率。已经通过原位结晶或二次生长方法成功地合成了四种支撑在HNMs上的沸石膜,这表明HNMs具有良好的通用性来支撑沸石膜。

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