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Identification of irreversible UF membrane foulants by fluorescence excitation-emission matrix coupled with parallel factor analysis

机译:荧光激发-发射矩阵结合并行因子分析鉴定不可逆超滤膜污垢

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In this work, a total of nine water samples were taken from different water sources at different seasons for UF membrane fouling experiments, with the purpose to find out if there were common foulant components responsible for the irreversible membrane fouling. It was found that the increase in DOC and UV254 in raw water caused a corresponding increase in the developing rate of irreversible membrane fouling, demonstrating NOM as the major membrane foulants. Using the fluorescence excitation-emission matrices coupled with parallel factor analysis, four fluorescence components in NOM were identified, i.e. microbial-derived and terrestrial-derived humic-like substances (C1 and C3), tryptophanlike and tyrosine-like proteins (C2 and C4). The C2 exhibited a strong correlation with the irreversible fouling of UF membrane, while no correlation between C4 and irreversible membrane fouling was observed. The humic-like substances were shown to be weakly correlated to the irreversible membrane fouling. By multivariate linear regression, synergistic fouling effect was identified between the C2 and C3, but a comparison of their coefficients revealed that C2 made a considerably larger contribution to the irreversible membrane fouling than C3. The results may provide insights into the development of appropriate fouling control strategies for sustainable UF operation.
机译:在这项工作中,从不同的水源,不同的季节共采集了九个水样,用于超滤膜结垢实验,目的是找出是否存在导致不可逆膜结垢的常见结垢成分。已发现原水中DOC和UV254的增加引起不可逆膜污染的发生率相应增加,这证明NOM是主要的膜污染物质。使用荧光激发-发射矩阵与并行因子分析相结合,在NOM中鉴定出四个荧光成分,即微生物来源和陆地来源的腐殖质样物质(C1和C3),色氨酸和酪氨酸样蛋白(C2和C4)。 。 C2与UF膜的不可逆结垢表现出很强的相关性,而C4和不可逆膜的结垢之间没有相关性。腐殖质样物质与不可逆膜结垢的相关性很弱。通过多元线性回归,可以确定C2和C3之间的协同结垢效果,但是通过比较它们的系数,发现C2对不可逆膜结垢的贡献比C3大得多。结果可能为可持续超滤操作的适当结垢控制策略的发展提供见解。

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