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Modeling formation of natural organic matter fouling layers on ultrafiltration membranes

机译:模拟超滤膜上天然有机物结垢层的形成

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Three simple mathematical models to describe fouling of an ultrafiltration membrane by natural organic matter (NOM) are developed and compared. These models attribute the fouling to: (1) an increase of the effective pore length by an amount equal to the thickness of the NOM gel layer that forms on the membrane surface; (2) formation of a uniform, microporous NOM gel layer on the membrane surface, made of primary particles comprising tens to hundreds of NOM molecules; or (3) narrowing of the membrane pores by sorption of a monolayer of NOM molecules along the full length of each pore. The key parameters characterizing each model are identified and estimated based on data for flux and film growth gathered in the same system. In each case, the estimated parameter values are plausible in light of the known physical properties of the membrane and NOM molecules. [References: 28]
机译:开发并比较了三种简单的数学模型来描述自然有机物(NOM)对超滤膜的污染。这些模型将结垢归因于:(1)有效孔径的增加量等于在膜表面上形成的NOM凝胶层的厚度; (2)在膜表面上形成均匀的,微孔的NOM凝胶层,该凝胶层由包含数十至数百个NOM分子的初级颗粒制成;或(3)通过沿每个孔的全长吸附一层NOM分子而使膜孔变窄。根据在同一系统中收集的流量和薄膜生长数据,识别并估算表征每个模型的关键参数。在每种情况下,根据膜和NOM分子的已知物理特性,估计的参数值都是合理的。 [参考:28]

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