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Assessing the effects of sodium hypochlorite exposure on the characteristics of PVDF based membranes

机译:评估次氯酸钠暴露对PVDF基膜特性的影响

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摘要

Sodium hypochlorite is commonly used as a cleaning agent to remove adsorbed foulants from PVDF based micro/ultra filtration membranes in water and wastewater treatment applications. Although effective for fouling control, extended sodium hypochlorite exposure can affect the physical/chemical characteristics and hinder the treatment performance of these membranes. To assess these effects, PVDF based membranes were exposed to sodium hypochlorite at different concentrations for varying periods of time, and the physical/chemical characteristics of the virgin and sodium hypochlorite exposed membranes were compared. The membranes were characterized based on chemical composition (FTIR and NMR), mechanical strength (yield strength), surface hydrophilicity (contact angle), pore size and porosity (scanning electron microscopy and challenge test), and membrane resistance (clean water permeation test). The results indicated that exposure dose and concentration of the sodium hypochlorite used have significant influence on the membrane characteristics. The impact of sodium hypochlorite exposure on the parameters investigated could be most accurately and consistently correlated to an exposure dose relationship of the form C~nt (where, C = concentration and t = exposure time) rather than the Ct relationship commonly used to define the extent of exposure to cleaning agents. For all the parameters investigated, the power coefficient n was less than 1 indicating that time had a greater impact on the changes than did the concentration of the sodium hypochlorite. The results suggest that the use of sodium hypochlorite for chemical cleaning, at concentrations that are higher than those typically used for chemical cleaning would have less of an effect on the characteristics of the membrane materials. Changes in the characteristics were attributed to the oxidation of the hydrophilic additives (HA) present in blended PVDF membranes.
机译:次氯酸钠通常用作清洁剂,用于在水和废水处理应用中从基于PVDF的微/超滤膜上去除吸附的污垢。尽管有效控制结垢,但长时间暴露于次氯酸钠会影响物理/化学特性并阻碍这些膜的处理性能。为了评估这些效果,将基于PVDF的膜暴露于不同浓度的次氯酸钠中持续不同的时间,并比较原始和次氯酸钠暴露的膜的物理/化学特性。根据化学成分(FTIR和NMR),机械强度(屈服强度),表面亲水性(接触角),孔径和孔隙率(扫描电子显微镜和挑战试验)以及膜电阻(清洁水渗透测试)对膜进行表征。 。结果表明,暴露剂量和所用次氯酸钠的浓度对膜的特性有重要影响。次氯酸钠暴露对所研究参数的影响可以最准确且始终如一地与形式为C〜nt的暴露剂量关系(其中C =浓度和t =暴露时间)相关,而不是通常用来定义Ct关系的Ct关系。接触清洁剂的程度。对于所有调查的参数,功率系数n均小于1,这表明时间对变化的影响大于次氯酸钠的浓度。结果表明,以高于通常用于化学清洁的浓度使用次氯酸钠进行化学清洁对膜材料特性的影响较小。特性的变化归因于混合PVDF膜中存在的亲水性添加剂(HA)的氧化。

著录项

  • 来源
    《Water Research》 |2013年第14期|5392-5399|共8页
  • 作者单位

    The University of British Columbia, Department of Civil Engineering, 2002-6250 Applied Science Lane, Vancouver, B.C. Canada V6T 11Z4;

    The University of British Columbia, Department of Civil Engineering, 2002-6250 Applied Science Lane, Vancouver, B.C. Canada V6T 11Z4;

  • 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

    Exposure dose; Membrane lifetime; Hydrophilic additive; Oxidation; NMR; Porosity;

    机译:接触剂量;膜寿命;亲水性添加剂;氧化;NMR;孔隙率;
  • 入库时间 2022-08-17 13:45:39

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