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一种用于强化膜蒸馏的超疏水分级多孔膜。

A super liquid-repellent hierarchical porous membrane for enhanced membrane distillation.

作者信息

Hou Youmin, Shah Prexa, Constantoudis Vassilios, Gogolides Evangelos, Kappl Michael, Butt Hans-Jürgen

机构信息

Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.

School of Power and Mechanical Engineering, Wuhan University, 430072, Wuhan, China.

出版信息

Nat Commun. 2023 Oct 28;14(1):6886. doi: 10.1038/s41467-023-42204-7.

Abstract

Membrane distillation (MD) is an emerging desalination technology that exploits phase change to separate water vapor from saline based on low-grade energy. As MD membranes come into contact with saline for days or weeks during desalination, membrane pores have to be sufficiently small (typically <0.2 µm) to avoid saline wetting into the membrane. However, in order to achieve high distillation flux, the pore size should be large enough to maximize transmembrane vapor transfer. These conflicting requirements of pore geometry pose a challenge to membrane design and currently hinder broader applications of MD. To address this fundamental challenge, we developed a super liquid-repellent membrane with hierarchical porous structures by coating a polysiloxane nanofilament network on a commercial micro-porous polyethersulfone membrane matrix. The fluorine-free nanofilament coating effectively prevents membrane wetting under high hydrostatic pressure (>11.5 bar) without compromising vapor transport. With large inner micro-porous structures, the nanofilament-coated membrane improves the distillation flux by up to 60% over the widely used commercially available membranes, while showing excellent salt rejection and operating stability. Our approach will allow the fabrication of high-performance composite membranes with multi-scale porous structures that have wide-ranging applications beyond desalination, such as in cleaning wastewater.

摘要

膜蒸馏(MD)是一种新兴的脱盐技术,它利用相变基于低品位能源从盐水中分离出水蒸气。在脱盐过程中,MD膜与盐水接触数天或数周,膜孔必须足够小(通常<0.2μm)以避免盐水渗入膜中。然而,为了实现高蒸馏通量,孔径应足够大,以使跨膜蒸汽传输最大化。这些相互矛盾的孔几何要求对膜设计构成了挑战,目前阻碍了MD的更广泛应用。为了应对这一基本挑战,我们通过在商用微孔聚醚砜膜基质上涂覆聚硅氧烷纳米丝网络,开发了一种具有分级多孔结构的超疏水膜。无氟纳米丝涂层在不影响蒸汽传输的情况下,能有效防止膜在高静水压力(>11.5巴)下被润湿。由于具有大的内部微孔结构,纳米丝涂层膜的蒸馏通量比广泛使用的市售膜提高了60%,同时表现出优异的脱盐率和操作稳定性。我们的方法将允许制造具有多尺度多孔结构的高性能复合膜,这些膜除了用于脱盐外,还具有广泛的应用,例如清洁废水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a50/10613234/dc13ab2df44c/41467_2023_42204_Fig1_HTML.jpg

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