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Simulation of unstirred batch ultrafiltration process based on a reversible pore-plugging model

机译:基于可逆孔塞模型的间歇式超滤过程模拟

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An unsteady state mass transfer model has been developed taking into account the effect of reversible pore plugging by the diffusing solute molecules. The osmotic pressure model has been used to predict the membrane surface concentration. The rate of available fractional area of the membrane that is blocked at any time due to pore plugging phenomenon has been assumed to be the function of dimensionless membrane surface concentration prevailing at that time. Experimental data generated in this study using cellulose acetate membrane of 5000 MWCO and polyethylene glycol (PEG)--6000 as solute in unstirred batch configuration has been used to find the appropriate nature of the above--mentioned function. Once the functional dependency between the rate of fractional area blocked and dimensionless membrane surface concentration has been found, it can be used to simulate flux and rejection behaviour during unstirred batch ultrafiItration (UF). The predicted results show very good agreement with the experimental data and the average deviations for all the cases are found to be well within ± l0/100.
机译:考虑到扩散的溶质分子可逆的孔堵塞效应,已经建立了非稳态传质模型。渗透压模型已用于预测膜表面浓度。由于孔堵塞现象而在任何时候被阻塞的膜的可用分数面积的速率被认为是当时普遍存在的无因次膜表面浓度的函数。本研究使用5000 MWCO的醋酸纤维素膜和聚乙二醇(PEG)-6000作为未搅拌的分批配置的溶质生成的实验数据已用于发现上述功能的适当性质。一旦发现了封堵的分数面积率与无因次膜表面浓度之间的函数相关性,就可以将其用于模拟未搅拌的批次超滤(UF)过程中的通量和截留行为。预测结果与实验数据非常吻合,所有情况下的平均偏差均在±10/100之内。

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