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Removal of trace organics from aqueous solutions. Effect of membrane thickness

机译:从水溶液中去除微量有机物。膜厚的影响

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摘要

A resistance-in-series model is used to describe the pervaporation performance of elastomeric membranes in the removal of volatile organic components from water. Equations have been derived to describe the organic component flux as a function of feed concentration, permeability of the organic component in the membrane, membrane thickness and liquid boundary layer mass transfer coefficient. The model has been verified using both homogeneous and composite membranes of polydimethylsiloxane, ethylene propylene rubber and polyoctenamer. Membranes with a wide range of thicknesses have been prepared and the pervaporation behaviour for the removal of toluene and trichloroethylene from aqueous solutions has been studied. The experiments show that the hydrodynamic boundary layer resistance is of great importance. For highly permeable polymers such as polydimethylsiloxane mass transfer in the boundary layer is rate determining and should be considered carefully in further development of the process. For less permeable polymers such as ethylene propylene rubber this effect becomes more dominant with decreasing membrane thickness. The water fluxes are inversely proportional to the thickness of the actual separating layer and they depend strongly on the type of elastomer used. A proper choice of the elastomeric material and the thickness of the separating layer will determine the selectivity of the process.
机译:串联电阻模型用于描述弹性膜从水中去除挥发性有机成分时的全蒸发性能。已经得出方程式来描述有机组分通量作为进料浓度,膜中有机组分的渗透性,膜厚度和液体边界层传质系数的函数。该模型已经使用聚二甲基硅氧烷,乙丙橡胶和聚辛烯单体的均质和复合膜进行了验证。已经制备了具有广泛厚度的膜,并且已经研究了用于从水溶液中去除甲苯和三氯乙烯的全蒸发行为。实验表明,水动力边界层阻力具有重要意义。对于诸如聚二甲基硅氧烷之类的高渗透性聚合物,边界层中的质量转移是速率确定的,并且在该方法的进一步开发中应仔细考虑。对于渗透性较低的聚合物(例如乙丙橡胶),随着膜厚度的减小,该效果将变得更加明显。水通量与实际分离层的厚度成反比,并且在很大程度上取决于所用弹性体的类型。弹性体材料的适当选择和分隔层的厚度将决定工艺的选择性。

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