Qin Yi, Shen Hui, Han Lu, Zhu Zongmin, Pan Fei, Yang Shiwen, Yin Xianze
Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.
High-tech Organic Fibers Key Laboratory of Sichuan Province, Chengdu, Sichuan 610072, China.
ACS Appl Mater Interfaces. 2020 Nov 11;12(45):50879-50888. doi: 10.1021/acsami.0c15310. Epub 2020 Oct 30.
An ideal oil/water separation membrane should possess the characteristics of high flux and separation efficiency, recyclability, as well as good mechanical stability. Herein, a facile method is applied to fabricate a Janus polylactic acid (PLA) fibrous membrane for efficiently separating surfactant-stabilized oil/water mixtures. The Janus PLA fibrous membrane architecture was prepared by electrospinning a PLA/carbon nanotubes (CNTs) fibrous membrane and the subsequent electrospinning of a PLA/SiO nanofluids (nfs) membrane onto one side of the PLA/CNTs fibrous membrane. Due to the strong electrostatic interaction between SiO nfs and CNTs, synchronous enhancement and plasticization of PLA fibrous membranes were achieved, which was far superior to that reported in the literature. The introduction of CNTs had caused an upshift of the hydrophobicity of the PLA/CNTs fibrous membrane (water contact angle (WCA) > 140°). In contrast, SiO nfs bearing long-chain organic anions and cations located onto the surface of the fibers during electrospinning to achieve superhydrophilicity (WCA ≈ 0°). Benefiting from completely opposite wettability on both sides of the Janus membrane, the obtained asymmetric Janus membranes exhibited a high flux (1142-1485 L m L) and excellent oil/water separation efficiency (>99%), which were superior to those reported for other Janus membranes. Furthermore, the Janus membranes showed desirable flux recovery without any treatment (>80% for water-in-oil emulsions and >90% for oil-in-water emulsions, respectively, after 11 cycles), showcasing promising applications for water treatment in the future.
理想的油/水分离膜应具备高通量、高分离效率、可回收性以及良好的机械稳定性等特性。在此,我们采用一种简便的方法制备了一种用于高效分离表面活性剂稳定的油/水混合物的Janus聚乳酸(PLA)纤维膜。Janus PLA纤维膜结构是通过静电纺丝制备PLA/碳纳米管(CNT)纤维膜,随后将PLA/SiO纳米流体(nf)膜静电纺丝到PLA/CNT纤维膜的一侧而制备的。由于SiO nf与CNT之间存在强静电相互作用,实现了PLA纤维膜的同步增强和增塑,这远远优于文献报道的结果。CNT的引入使PLA/CNT纤维膜的疏水性有所提高(水接触角(WCA)>140°)。相比之下,带有长链有机阴离子和阳离子的SiO nf在静电纺丝过程中位于纤维表面,从而实现了超亲水性(WCA≈0°)。得益于Janus膜两侧完全相反的润湿性,所制备的不对称Janus膜表现出高通量(1142 - 1485 L m L)和优异的油/水分离效率(>99%),优于其他Janus膜的报道。此外,Janus膜在未经任何处理的情况下表现出理想的通量恢复(分别在11次循环后,对于油包水乳液>80%,对于水包油乳液>90%),展示了其在未来水处理方面的广阔应用前景。