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Monitoring UF membrane performance treating surface-groundwater blends: limitations of FEEM-PARAFAC on the assessment of the organic matter role

机译:监测UF膜性能处理表面 - 地下水混合物:FEEm-paRaFaC在评估有机物作用方面的局限性

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摘要

The decrease of water quantity and quality in water scarcity areas is palliated by improving water treatments with membrane technologies. System performance and efficiency, and then cost, is mainly affected by membrane fouling, which is still not well understood and controlled appropriately. In this study, the influence of content and composition of dissolved organic matter (DOM) on a membrane ultrafiltration (UF) stage from a full-scale UF stage in a drinking water treatment plant (DWTP) fed with surface water, groundwater (or blends of them) was investigated. Excitation-emission matrix (EEM) fluorescence spectroscopy coupled with parallel factor analysis (PARAFAC) was used to characterize and assess DOM changes in water samples Water streams feeding the UF stage showed high variability in DOM content and composition. FEEM-PARAFAC analysis allowed the differentiation of seven different organic components. Additionally to the characterization and monitoring of DOM in the full-scale UF stage, a bench scale UF pilot was run to experimentally correlate the impact of water quality with membrane performance. The experiments included testing synthetic solutions of model foulants (synthetic humic acid and bovine serum albumin) and blends of complex waters. To quantify fouling, the total fouling index (TFI) and the hydraulically irreversible fouling index (HIFI) were calculated for each filtration run. According to the results obtained, the correlation plots between the PARAFAC components and the fouling indices pointed at microbial byproducts (C1) and humic-like components (C2, C4, C5) as the ones showing higher correlations.
机译:通过改善膜技术对水的处理,可以缓解水短缺地区水量和水质的下降。系统性能和效率以及随后的成本主要受到膜污染的影响,而膜污染仍未得到很好的理解和适当的控制。在这项研究中,溶解性有机物(DOM)的含量和组成对饮用水处理厂(DWTP)中以地表水,地下水(或混合物)为原料的全尺寸超滤阶段从膜超滤(UF)阶段的影响他们)。激发-发射矩阵(EEM)荧光光谱结合并行因子分析(PARAFAC)用于表征和评估水样品中DOM的变化进料到超滤阶段的水流在DOM含量和组成方面表现出高度的可变性。 FEEM-PARAFAC分析可以区分7种不同的有机成分。除了在全尺寸超滤阶段表征和监测DOM之外,还运行了台式超滤试验,以实验方式将水质的影响与膜性能相关联。实验包括测试模型污垢的合成溶液(合成腐殖酸和牛血清白蛋白)以及复杂水的混合物。为了量化结垢,对每个过滤运行计算了总结垢指数(TFI)和液压不可逆结垢指数(HIFI)。根据获得的结果,PARAFAC组分与结垢指数之间的相关图以微生物副产物(C1)和类腐殖质组分(C2,C4,C5)为高相关性。

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