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Development of Omniphobic Desalination Membranes Using a Charged Electrospun Nanofiber Scaffold

机译:使用带电的静电纺纳米纤维支架开发疏水性脱盐膜

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In this study, we present a facile and scalable approach to fabricate omniphobic nanofiber membranes by constructing multilevel re-entrant structures with low surface energy. We first prepared positively charged nanofiber mats by electrospinning a blend polymer surfactant solution of poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) and cationic surfactant (benzyltriethylammonium). Negatively charged silica nanoparticles (SiNPs) were grafted on the positively charged electrospun nanofibers via dip-coating to achieve multilevel re-entrant structures. Grafted SiNPs were then coated with fluoroalkylsilane to lower the surface energy of the membrane. The fabricated membrane showed excellent omniphobicity, as demonstrated by its wetting resistance to various low surface tension liquids, including ethanol with a surface tension of 22.1 mN/m. As a promising application, the prepared omniphobic membrane was tested in direct contact membrane distillation to extract water from highly saline feed solutions containing low surface tension substances, mimicking emerging industrial wastewaters (e.g., from shale gas production). While a control hydrophobic PVDF-HFP nanofiber membrane failed in the desalination/separation process due to low wetting resistance, our fabricated omniphobic membrane exhibited a stable desalination performance for 8 h of operation, successfully demonstrating clean water production from the low surface tension feedwater.
机译:在这项研究中,我们提出了一种通过构建具有低表面能的多级折返结构来制造全疏水性纳米纤维膜的简便且可扩展的方法。我们首先通过静电纺丝聚偏二氟乙烯-共六氟丙烯(PVDF-HFP)和阳离子表面活性剂(苄基三乙基铵)的混合聚合物表面活性剂溶液来制备带正电荷的纳米纤维垫。通过浸涂将带负电的二氧化硅纳米粒子(SiNP)接枝到带正电的静电纺丝纳米纤维上,以实现多级凹角结构。然后将接枝的SiNP涂上氟代烷基硅烷,以降低膜的表面能。所制造的膜表现出优异的憎油性,如其对各种低表面张力液体(包括表面张力为22.1 mN / m的乙醇)的润湿性所证明的。作为有前途的应用,在直接接触膜蒸馏中测试了所制备的全疏水膜,以从含有低表面张力物质的高盐度进料溶液中提取水,模拟新兴的工业废水(例如,页岩气生产中的废水)。尽管由于疏水性低,对照疏水PVDF-HFP纳米纤维膜在脱盐/分离过程中失败,但我们制造的全疏水膜在运行8小时后仍表现出稳定的脱盐性能,成功地证明了低表面张力给水产生的清洁水。

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