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用于制备复合薄膜的快速中空纤维涂层装置。

Rapid hollow fiber-coating device for thin film composite membrane preparation.

作者信息

Karousos Dionysios S, Chiesa Francesco, Theodorakopoulos George V, Bouroushian Mirtat, Favvas Evangelos P

机构信息

Institute of Nanoscience and Nanotechnology, National Center for Scientific Research "Demokritos", Aghia Paraskevi, 15341 Athens, Greece.

School of Applied Mathematical and Physical Sciences, National Technical University of Athens, 9 Iroon Polytechniou Street, 15780 Athens, Greece.

出版信息

Rev Sci Instrum. 2024 Mar 1;95(3). doi: 10.1063/5.0176413.

Abstract

Aligned with the recent trend and imperative to reduce separation layer thickness in gas separation membranes to the nanometer scale in order to raise permeance to levels that can render them competitive with respect to other gas separation technologies, a novel approach and device for fabricating defect-free composite hollow fiber (HF) membranes by dip-coating is described. The presented method avoids the fundamental drawbacks of state-of-the-art techniques for applying a thin gas separation layer onto a porous HF substrate, providing a safe but, at the same time, easily up-scalable way of producing HF membranes at a relatively high production rate. As a basic concept, hanging HF substrates are coated by allowing the coating solution to flow and drip along their external surface. The adaptability of this method, stemming from the array of available coating solutions (a plethora of dispersed nanofillers) and the multitude of substrate options, holds great promise for the fabrication of highly selective and defect-free composite HF membranes.

摘要

为了将气体分离膜中的分离层厚度减小到纳米尺度,以提高渗透率,使其在与其他气体分离技术的竞争中具有竞争力,这与最近的趋势和要求相一致,本文描述了一种通过浸涂制造无缺陷复合中空纤维(HF)膜的新方法和装置。所提出的方法避免了将薄气体分离层应用于多孔HF基材的现有技术的基本缺点,提供了一种安全但同时易于扩大规模的方法,以相对较高的生产率生产HF膜。作为一个基本概念,悬挂的HF基材通过使涂层溶液沿着其外表面流动和滴下来进行涂覆。这种方法的适应性源于可用涂层溶液(大量分散的纳米填料)的种类和多种基材选择,对于制造高选择性和无缺陷的复合HF膜具有很大的前景。

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