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Assessing irreversible fouling behavior of membrane foulants in the ultrafiltration of natural water using principal component analysis of fluorescence excitation-emission matrices

机译:使用荧光激发-发射矩阵的主成分分析评估天然水超滤中膜污染物的不可逆结垢行为

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摘要

Natural river water is comprised of different foulant components such as natural organic matter and colloidal/particulate matter. Both individual and combined contributions of these foulant components results in different fouling behaviour. The ability to characterize these contributions that lead to reversible and irreversible membrane fouling would be beneficial for the implementation of fouling monitoring and control strategies for membrane-based drinking water treatment operations. A fluorescence excitation-emission matrix and principal component analysis-based approach was able to qualitatively estimate the accumulation of humic substances (HS)-, protein- and colloidal/ particulate matter-like foulant components in membranes during the ultrafiltration (UF) of natural river water. A bench-scale flat sheet UF cross-flow set-up and successive permeation and membrane backwashing cycles were used. Analysis of the accumulation of these foulant components revealed that the increased levels of colloidal/particulate matter accumulation in the membranes appeared to have increased the extent of irreversible fouling by HS-like matter whereas lower irreversible fouling by protein-like matter was observed with increased colloidal/particulate matter accumulation. The results also indicate that the combined contributions by these foulants are important in the fouling of membranes during the UF of river water.
机译:天然河水由不同的污垢成分组成,例如天然有机物和胶体/颗粒物。这些结垢成分的单独贡献和综合贡献都会导致不同的结垢行为。表征导致可逆和不可逆的膜污染的这些贡献的能力将有利于实施基于膜的饮用水处理操作的污染监测和控制策略。荧光激发-发射矩阵和基于主成分分析的方法能够定性地估算天然河超滤(UF)过程中膜中腐殖质(HS),蛋白质和胶体/颗粒物状污垢组分的积累水。使用台式规模的平板UF错流设置以及连续的渗透和膜反冲洗循环。对这些污垢组分的积累的分析表明,膜中胶体/微粒物质积累水平的增加似乎增加了类似HS的物质不可逆结垢的程度,而观察到随着增加的胶体状蛋白质样不可逆结垢的程度降低了/颗粒物积累。结果还表明,这些污垢的综合贡献在河水超滤过程中对膜的结垢很重要。

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