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Modified PVDF ultrafiltration flat-sheet membranes for water treatment.

机译:用于水处理的改性PVDF超滤平板膜。

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摘要

In recent years, membranes separation processes have been increasingly used in the design and upgrade of water treatment plants to comply with the more stringent regulations and to exploit water resources of lower quality. Membrane fouling decreases the water production rate with time and is the main disadvantage of this technology. In this research, polyvinylidine (PVDF) membranes were modified using a new type of hydrophilic polyurethane additive, called L2MMs, to decrease the fouling. This hydrophilic additive migrates to the membrane surface during phase inversion and modifies the membrane characteristics. In this research, membranes were modified with different batches of two L2MMs: L2MM(PEG-200) and L2MM(PEG-600).;During filtration/fouling test with Ottawa River water (ORW), the experimental membranes showed high TOC removals (63.7% to 77.5%). Membrane incorporating L2MM(PEG-200) had higher TOC removals than those using L2MM(PEG-600). The 18%PVDF+3%L2MM(PEG-200) membranes was the best membrane since it produced the highest cumulative permeate volume, plus it fouled less and had 23% higher TOC removal than the commercial membrane.;In the first part of this work, pure water permeation (PWP) tests, contact angle measurement, X-ray photoelectron spectroscopy (XPS), and atomic force microscopy (AFM) were used to assess the impact of L2MM type, L2MM concentration and PVDF concentration on the performance and characteristics of modified PVDF membranes. The L2MMs had a significant effect on flux. Increasing the L2MM concentration improved the membrane fluxes up to a maximum and a further increase in additive concentrations resulted in a flux decrease. Both L2MM(PEG-200) and L2MM(PEG-600) increased the final PWP flux of modified PVDF membranes to 6.5 times the control membrane. Moreover, L2MM(PEG-200) increased the 100 kDa polyethylene oxide (PEO) removal from 88 to 96% compared to the control membrane. XPS analysis and contact angle measurements indicated that the L2MM(PEG-200) modified the membrane surface. L2MM(PEG-200) addition helped decrease the contact angle of the modified membranes by up to 19%.
机译:近年来,膜分离工艺已越来越多地用于水处理厂的设计和升级中,以符合更严格的规定并开发质量较低的水资源。膜结垢会随着时间的流逝降低产水率,这是该技术的主要缺点。在这项研究中,使用称为L2MM的新型亲水性聚氨酯添加剂对聚偏二乙烯(PVDF)膜进行了改性,以减少结垢。该亲水性添加剂在相转化过程中迁移到膜表面并改变膜的特性。在这项研究中,膜被不同批次的两种L2MM改性:L2MM(PEG-200)和L2MM(PEG-600).;在渥太华河水(ORW)的过滤/结垢测试中,实验膜显示出较高的TOC去除率( 63.7%至77.5%)。加入L2MM(PEG-200)的膜的TOC去除率高于使用L2MM(PEG-600)的膜。 18%PVDF + 3%L2MM(PEG-200)膜是最好的膜,因为它产生了最高的累积渗透物体积,而且结垢程度也比市售膜要高23%。工作,纯水渗透(PWP)测试,接触角测量,X射线光电子能谱(XPS)和原子力显微镜(AFM)用于评估L2MM类型,L2MM浓度和PVDF浓度对性能和特性的影响改性PVDF膜的制造。 L2MM对通量有显着影响。 L2MM浓度的增加将膜通量提高到最大,而添加剂浓度的进一步增加导致通量降低。 L2MM(PEG-200)和L2MM(PEG-600)都将改性PVDF膜的最终PWP通量提高到对照膜的6.5倍。此外,与对照膜相比,L2MM(PEG-200)将100 kDa聚环氧乙烷(PEO)的去除率从88%提高到96%。 XPS分析和接触角测量表明,L2MM(PEG-200)修饰了膜表面。 L2MM(PEG-200)的添加有助于将改性膜的接触角降低多达19%。

著录项

  • 作者

    Pezeshk, Niloufar.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Environmental.
  • 学位 M.A.Sc.
  • 年度 2010
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:11

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