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Assessing the role of feed water constituents in irreversible membrane fouling of pilot-scale ultrafiltration drinking water treatment systems

机译:评估给水成分在中试规模超滤饮用水处理系统的不可逆膜结垢中的作用

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摘要

Fluorescence excitation-emission matrix (EEM) approach together with principal component analysis (PCA) was used for assessing hydraulically irreversible fouling of three pilot-scale ultrafiltration (UF) systems containing full-scale and bench-scale hollow fiber membrane modules in drinking water treatment. These systems were operated for at least three months with extensive cycles of permeation, combination of back-pulsing and scouring and chemical cleaning. The principal component (PC) scores generated from the PCA of the fluorescence EEMs were found to be related to humic substances (HS), protein-like and colloidal/particulate matter content. PC scores of HS- and protein-like matter of the UF feed water, when considered separately, showed reasonably good correlations with the rate of hydraulically irreversible fouling for long-term UF operations. In contrast, comparatively weaker correla-tions for PC scores of colloidal/particulate matter and the rate of hydraulically irreversible fouling were obtained for all UF systems. Since, individual correlations could not fully explain the evolution of the rate of irreversible fouling, multi-linear regression models were devel-oped to relate the combined effect of HS-like, protein-like and colloidal/particulate matter PC scores to the rate of hydraulically irreversible fouling for each specific UF system. These multi-linear regression models revealed significant individual and combined contribution of HS- and protein-like matter to the rate of hydraulically irreversible fouling, with protein-like matter generally showing the greatest contribution. The contribution of colloidal/particulate matter to the rate of hydraulically irreversible fouling was not as significant. The addition of polyaluminum chloride, as coagulant, to UF feed appeared to have a positive impact in reducing hydraulically irreversible fouling by these constituents. The proposed approach has applications in quantifying the individual and synergistic contribution of major natural water constituents to the rate of hydraulically irreversible membrane fouling and shows potential for controlling UF irreversible fouling in the production of drinking water.
机译:荧光激发-发射矩阵(EEM)方法与主成分分析(PCA)一起用于评估饮用水处理中包含全尺寸和台式尺寸的中空纤维膜组件的三个中试超滤(UF)系统的液压不可逆结垢。这些系统运行了至少三个月,并经历了广泛的渗透,反冲与精练以及化学清洗相结合的周期。发现从荧光EEM的PCA生成的主成分(PC)分数与腐殖质(HS),类蛋白质和胶体/微粒含量有关。当单独考虑超滤给水的HS和类蛋白物质的PC分数时,它们与长期超滤操作的水力不可逆结垢率具有相当好的相关性。相反,对于所有超滤系统,胶体/颗粒物的PC分数和液压不可逆结垢率的相关性相对较弱。由于个体相关性不能完全解释不可逆结垢率的演变,因此开发了多线性回归模型以将HS样,蛋白样和胶体/颗粒物PC分数的组合效应与H的比率相关联。每个特定超滤系统的液压不可逆结垢。这些多线性回归模型揭示了HS和蛋白样物质对水不可逆结垢率的显着个体和综合贡献,而蛋白样物质通常表现出最大的贡献。胶体/颗粒物对水力不可逆结垢率的贡献并不显着。向超滤进料中添加聚氯化铝作为凝结剂似乎对减少这些成分在水力方面不可逆的结垢具有积极影响。所提出的方法在量化主要天然水成分对水硬性不可逆膜结垢率的单独和协同贡献方面具有应用价值,并显示了在饮用水生产中控制超滤不可逆结垢的潜力。

著录项

  • 来源
    《Water Research》 |2013年第10期|3364-3374|共11页
  • 作者单位

    Department of Chemical Engineering, Uniuersity of Waterloo, 200 University Auenue West, Waterloo, ON N2L 3G1, Canada;

    GE Power & Water, Water and Process Technologies, 3239 Dundas Street West, Oakuille, ON L6M 4B2, Canada;

    Department of Chemical Engineering, Uniuersity of Waterloo, 200 University Auenue West, Waterloo, ON N2L 3G1, Canada;

    Department of Chemical Engineering, Uniuersity of Waterloo, 200 University Auenue West, Waterloo, ON N2L 3G1, Canada;

    Department of Chemical Engineering, Uniuersity of Waterloo, 200 University Auenue West, Waterloo, ON N2L 3G1, Canada;

  • 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

    Irreversible membrane fouling; Fluorescence EEM; Principal component analysis; Ultrafiltration; Drinking water treatment;

    机译:不可逆的膜污染;荧光EEM;主成分分析;超滤;饮用水处理;

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