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工程纳米复合夹层用于新型陶瓷基正向渗透膜以提高性能。

Engineering a Nanocomposite Interlayer for a Novel Ceramic-Based Forward Osmosis Membrane with Enhanced Performance.

机构信息

Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education, MOE), School of Environmental Science and Technology, Dalian University of Technology, Dalian 116024, China.

School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, China.

出版信息

Environ Sci Technol. 2020 Jun 16;54(12):7715-7724. doi: 10.1021/acs.est.0c02809. Epub 2020 May 28.

Abstract

Rational design of a high-performance defect-free polyamide (PA) layer on a robust ceramic substrate is challenging for forward osmosis (FO) water treatment applications. In this study, we first demonstrated a robust ceramic-based thin-film composite (TFC) FO membrane by engineering a novel nanocomposite interlayer of titanium dioxide and carbon nanotube (TiO/CNT). The structural morphologies and properties were systematically characterized for different substrates (without interlayer, with TiO interlayer, or with TiO/CNT interlayer) and the corresponding ceramic-based TFC-FO membranes. Introduction of low roughness nanocomposite interlayers with decreased pore size created an interface with improved surface characteristics, favoring the formation of a defect-free nanovoid-containing PA layer with high cross-linking degree. The resulting ceramic-based FO membrane had a water permeability of approximately 2 L/(m h bar) and a NaCl rejection of 98%, showing simultaneous enhancements in both compared to the control membrane without an interlayer. Mechanism analysis indicates that such a special nanocomposite interlayer not only provided more active sites for the formation of a thinner defect-free nanovoid-containing PA layer without penetration into substrate but also acted as a highly porous three-dimensional network structure for rapid water transport. This work provides a novel protocol for rational design and fabrication of a high-performance multilayered inorganic FO membrane as well as extended applications in water treatment with enhanced performance.

摘要

在用于正向渗透(FO)水处理应用的情况下,在坚固的陶瓷基底上设计高性能、无缺陷的聚酰胺(PA)层极具挑战性。在本研究中,我们首先通过工程设计一种新型的二氧化钛和碳纳米管(TiO/CNT)纳米复合夹层,展示了一种坚固的基于陶瓷的薄膜复合(TFC)FO 膜。针对不同基底(无夹层、有 TiO 夹层或有 TiO/CNT 夹层)和相应的基于陶瓷的 TFC-FO 膜,对结构形态和性能进行了系统的表征。低粗糙度纳米复合夹层的引入降低了孔径,形成了具有改进表面特性的界面,有利于形成具有高交联度的无缺陷纳米空隙含 PA 层。所得基于陶瓷的 FO 膜的水渗透率约为 2 L/(m h bar),NaCl 截留率为 98%,与没有夹层的对照膜相比,这两个性能均得到了显著提高。机理分析表明,这种特殊的纳米复合夹层不仅为形成更薄的无缺陷纳米空隙含 PA 层提供了更多的活性位点,而且为快速水传输提供了高度多孔的三维网络结构。这项工作为高性能多层无机 FO 膜的合理设计和制造提供了新的方案,并扩展了在具有增强性能的水处理中的应用。

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