Che Wenbo, Zhou Lingyue, Zhou Qiaoru, Xie Yanjun, Wang Yonggui
College of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou 311300, China.
College of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou 311300, China.
J Colloid Interface Sci. 2023 Jan;629(Pt B):719-727. doi: 10.1016/j.jcis.2022.09.109. Epub 2022 Sep 24.
Janus membranes have attracted much attention for switchable oil/water separation because they have opposite wetting behavior on each side. However, it remains a challenge to fabricate Janus membranes with asymmetric wettability from biomass by simple methods. Herein, we prepared a flexible Janus wood (JW) membrane by cutting the natural wood along the longitudinal direction, followed by a facile top-down approach. The hydrophobic lignin was removed from the wood to prepare a highly porous and superhydrophilic wood (SW) with underwater superoleophobicity. Then, one side of the SW was sprayed with a mixture of 1H,1H,2H,2H-perfluorooctyltrichlorosilane/SiO nanoparticles to form a superhydrophobic surface that hardly affected the wettability of the other side. The obtained JW membrane maintains its selective wettability in harsh environments owing to its durability and stability. Furthermore, it has a switchable, high separation efficiency of >99% for both oil-in-water and water-in-oil emulsions, which can be attributed to the unique wettability and hierarchical micro/nano structure of the JW membrane. Notably, the three-dimensional interconnected micro/nanochannels (pits and nanopores) of the JW membrane are beneficial to the size-sieving effect during emulsion separation. At the same time, the layered channels (tracheids and vessels) enable multiple separations. JW membrane is sustainable, inexpensive, stable, and easy to manufacture, providing more implications for the innovation of biomass-based Janus separation materials in industrial wastewater treatment.
Janus膜因其两侧具有相反的润湿性而在可切换的油/水分离方面备受关注。然而,通过简单方法从生物质制备具有不对称润湿性的Janus膜仍然是一项挑战。在此,我们通过沿纵向切割天然木材,然后采用一种简便的自上而下的方法制备了一种柔性Janus木材(JW)膜。从木材中去除疏水性木质素,制备出具有水下超疏油性的高度多孔且超亲水的木材(SW)。然后,在SW的一侧喷涂1H,1H,2H,2H-全氟辛基三氯硅烷/SiO纳米颗粒的混合物,形成几乎不影响另一侧润湿性的超疏水表面。所获得的JW膜由于其耐久性和稳定性,在恶劣环境中仍保持其选择性润湿性。此外,它对水包油和油包水乳液都具有可切换的、>99%的高分离效率,这可归因于JW膜独特的润湿性和分级微/纳米结构。值得注意的是,JW膜的三维相互连接的微/纳米通道(凹坑和纳米孔)有利于乳液分离过程中的尺寸筛分效应。同时,分层通道(管胞和导管)能够实现多次分离。JW膜可持续、廉价、稳定且易于制造,为工业废水处理中基于生物质的Janus分离材料的创新提供了更多启示。