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Preparation and characterization of poly(vinylidene fluoride)anoclay nanocomposite flat sheet membranes for abrasion resistance

机译:聚偏氟乙烯/纳米粘土纳米复合平板膜的制备与表征

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摘要

Membranes with more resilience to abrasive wear are highly desired in water treatment, especially for seawater desalination. Nanocomposite poly(vinylidene fluoride) (PVDF)/ nanoclay membranes were prepared by phase inversion and then tested for abrasion resistance. Their material properties were characterized using Fourier-transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), tensile testing, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). Nanoclay Cloisite~® 15A was utilised as the inorganic nanoparticle incorporated into PVDF. FTIR results showed a shifting of the PVDF crystalline phase from α to β thus indicating that the nanoclay altered the PVDF host material's structure and mechanical properties in terms of stiffness and toughness. Water permeation test showed that nanoclay at low concentration tended to reduce water flux. All nanocomposite membranes, with between 1 wt% and 5 wt% initial nanoclay loading, were more abrasion resistant than the control PVDF membrane. However, the 1 wt% exhibited superior resistance, lasting two times longer than the reference PVDF membrane under the same abrasive condition. The 1 wt% nanoclay membrane appeared less abraded by SEM observation, while also having the greatest tensile strength improvement (from 4.5 MPa to 4.9 MPa). This membrane also had the smallest agglomerated nanoclay particle size and highest toughness compared to the higher nanoclay content membranes. Nanoclays are therefore useful for improving abrasion resistance of PVDF membranes, but optimal loadings are essential to avoid losing essential mechanical properties.
机译:在水处理中,尤其是在海水淡化中,非常需要具有更高的耐磨性的膜。通过相转化制备纳米复合聚偏氟乙烯(PVDF)/纳米粘土膜,然后测试其耐磨性。使用傅里叶变换红外光谱(FTIR),热重分析(TGA),拉伸测试,扫描电子显微镜(SEM)和能量色散光谱(EDS)对它们的材料特性进行了表征。纳米粘土Cloisite®15A被用作掺入PVDF中的无机纳米颗粒。 FTIR结果表明,PVDF晶相从α转变为β,因此表明纳米粘土改变了PVDF基质材料的结构和机械性能,包括刚度和韧性。透水试验表明,低浓度的纳米粘土倾向于降低水通量。所有纳米复合材料膜的初始纳米粘土负载在1 wt%至5 wt%之间,比对照PVDF膜具有更高的耐磨性。但是,在相同的磨蚀条件下,1 wt%的电阻表现出优越的性能,其使用寿命是参考PVDF膜的两倍。 1重量%的纳米粘土膜通过SEM观察似乎较少磨损,同时也具有最大的拉伸强度改进(从4.5MPa至4.9MPa)。与较高的纳米粘土含量的膜相比,该膜还具有最小的团聚纳米粘土粒径和最高的韧性。因此,纳米粘土可用于改善PVDF膜的耐磨性,但是最佳负载对于避免失去必要的机械性能至关重要。

著录项

  • 来源
    《Water Research》 |2014年第15期|56-66|共11页
  • 作者单位

    Institute for Sustainability and Innovation, College of Engineering and Science, Victoria University, PO Box 14428,Melbourne, Victoria 8001, Australia;

    Institute for Sustainability and Innovation, College of Engineering and Science, Victoria University, PO Box 14428,Melbourne, Victoria 8001, Australia;

    Institute for Sustainability and Innovation, College of Engineering and Science, Victoria University, PO Box 14428,Melbourne, Victoria 8001, Australia;

    Institute for Sustainability and Innovation, College of Engineering and Science, Victoria University, PO Box 14428,Melbourne, Victoria 8001, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly(vinylidene fluoride); Nanoclay; Nanocomposite; Ultrafiltration; Abrasion resistance;

    机译:聚偏二氟乙烯;纳米粘土;纳米复合材料超滤;抗磨性;

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