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FAS Grafted Electrospun Poly(vinyl alcohol) Nanofiber Membranes with Robust Superhydrophobicity for Membrane Distillation

机译:具有稳健的超疏水性的​​FAS接枝静电纺聚乙烯醇纳米纤维膜,用于膜蒸馏

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This study develops a novel type of electrospun nanofiber membranes (ENMs) with high permeability and robust superhydrophobicity for membrane distillation (MD) process by mimicking the unique unitary microstructures of ramee leaves. The superhydrophobic ENMs were fabricated by the eletrospinning of poly(vinyl alcohol) (PVA), followed by chemical cross-linking with glutaraldehyde and surface modification via low surface energy fluoroalkylsilane (FAS). The resultant FAS grafted PVA (F-PVA) nanofiber membranes were endowed with self-cleaning properties with water contact angles of 158 degrees and sliding angles of 4 degrees via the modification process, while retaining their high porosities and interconnected open structures. For the first time, the robust superhydrophobicity of the ENMs for MD was confirmed by testing the F-PVA nanofiber membranes under violent ultrasonic treatment and harsh chemical conditions. Furthermore, vacuum membrane distillation experiments illustrated that the F-PVA membranes presented a high and stable permeate flux of 25.2 kg/m(2)h, 70% higher than those of the commercial PTFE membranes, with satisfied permeate conductivity (<5 mu m/cm) during a continuous test of 16 h (3.5 wt % NaCl as the feed solution, and feed temperature and permeate pressure were set as 333 K and 9 kPa, respectively), suggesting their great potentials in myriad MD processes such as high salinity water desalination and volatile organiccompounds removal.
机译:这项研究通过模仿麻叶片独特的单一微观结构,开发了一种新型的高渗透性和强疏水性的静电纺纳米纤维膜(ENMs),用于膜蒸馏(MD)工艺。通过对聚乙烯醇(PVA)进行静电纺丝,然后与戊二醛进行化学交联并通过低表面能的氟代烷基硅烷(FAS)进行表面改性,可以制造出超疏水性的​​ENM。通过改性工艺,所得FAS接枝的PVA(F-PVA)纳米纤维膜具有自清洁性能,水接触角为158度,滑动角为4度,同时保留了其高孔隙率和相互连接的开放结构。首次通过在剧烈的超声处理和苛刻的化学条件下测试F-PVA纳米纤维膜,确认了ENMs对MD的强大超疏水性。此外,真空膜蒸馏实验表明,F-PVA膜的渗透通量高且稳定,为25.2 kg / m(2)h,比市售PTFE膜高70%,并且具有令人满意的渗透电导率(<5μm / cm)连续测试16小时(进料溶液为3.5 wt%NaCl,进料温度和渗透压分别设置为333 K和9 kPa),表明它们在无数MD工艺(如高盐度)中具有巨大潜力水脱盐和挥发性有机化合物的去除。

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