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Modeling Ionic Strength Effects on Hollow-Fiber Nanofiltration Membrane Mass Transfer

机译:离子强度对中空纤维纳滤膜传质的影响

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摘要

In this research, we investigated the influence of feedwater ionic strength on diffusion of divalent ions through a hollow-fiber nanofiltration membrane. The results indicated that solute flux of magnesium was increased as a result of elevating the ionic strength in the feedwater. Specifically, the feedwater ionic strength was observed to have a nonlinear impact on the diffusion of magnesium during the nanofiltration process, which was under-predicted by the homogeneous solution diffusion (HSD) model. This result suggested that elevating the feedwater ionic strength had reduced the strength of the electrostatic double layer at the membrane surface. We then developed a modification of the HSD model (referred to as the HSD-IS model) which incorporated an empirical term related to the effect of feedwater ionic strength (IS) on diffusion of magnesium. The root mean squared error of the HSD-IS model was improved by 77% as compared to the HSD model, which did not incorporate a term related to feedwater ionic strength. This improvement suggested that feedwater ionic strength should be considered when modeling hardness removal during nanofiltration.
机译:在这项研究中,我们研究了给水离子强度对二价离子通过中空纤维纳滤膜扩散的影响。结果表明,由于提高了给水中的离子强度,镁的溶质通量增加了。具体而言,观察到给水离子强度对纳米过滤过程中镁的扩散具有非线性影响,而均匀溶液扩散(HSD)模型对此预测不足。该结果表明,提高给水离子强度已经降低了膜表面上的静电双层的强度。然后,我们开发了对HSD模型(称为HSD-IS模型)的修改,该模型并入了与给水离子强度(IS)对镁扩散的影响有关的经验术语。与未纳入与给水离子强度相关的术语的HSD模型相比,HSD-IS模型的均方根误差提高了77%。这种改进表明,在对纳滤过程中的硬度去除进行建模时,应考虑给水的离子强度。

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