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Ultrafast Fabrication of Metal-Organic Framework-Functionalized Superwetting Membrane for Multichannel Oil/Water Separation and Floating Oil Collection

机译:用于多通道油/水分离和浮油收集的金属 - 有机骨架 - 官能化过度雨膜超快制造

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摘要

Traditional methods for oil/water separation suffer from many tricky problems such as low efficiency, high energy consumption, and difficulties in recycling and reusing. To address these hurdles, we developed a metal-organic framework-coated superwetting membrane for multichannel oil/water separation and collection of floating oils. The dip-coating method adopted in this paper is extremely flexible in manipulation and can be completed within 1 h under a low temperature without any assistance of high pressure. Interestingly, the strategy of fabricating superwetting membrane mainly includes introducing vital interlayers of Cu(OH)(2) nanowires, which not only construct the favorable hierarchical structures but also act as partly sacrificed templates for further growth of hydrophilic MOF nanowhiskers. In virtue of the high flexibility of the as-prepared mesh, this superwetting membrane can be applied for multichannel oil/water separation including gravity-driven oil/water separation, continuous oil/water separation, and floating oil collection. Moreover, the separation efficiency and flux of the superwetting membrane keep high and stable under multiple separation cycles. This study paves the way for a fast and facile preparation of a superwetting membrane with high applicability for multiple oil/water separation.
机译:传统的石油/水分离方法遭受许多棘手的问题,例如低效率,高能耗,以及回收和再繁殖的困难。为了解决这些障碍,我们开发了一种用于多通道油/水分离和浮油收集的金属有机骨架涂层的超雨膜。本文采用的浸涂方法在操纵中非常灵活,可以在1小时内完成,在低温下没有任何高压的任何帮助。有趣的是,制造过度雨膜的策略主要包括引入Cu(OH)(2)纳米线的重要层间,其不仅构建有利的分层结构,而且还可作为亲水性MOF纳米须进一步生长的部分处死模板。借助于制备的AS制备的滤网的柔韧性,该过度膜膜可以应用于多通道油/水分离,包括重力驱动的油/水分离,连续油/水分离和浮油收集。此外,在多个分离循环下,超雨膜膜的分离效率和通量保持高稳定。本研究铺设了一种快速的膜的快速和容易制备的方式,具有高适用性的多种油/水分离。

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