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Fluid flow and mass transfer modelling in lysozyme ultrafiltration

机译:溶菌酶超滤中的流体流动和传质模型

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摘要

This work addresses the mass transfer modelling of ternary solutions, water/lysozyme/sodium chloride, in the slit feed channel of a ultrafiltration (UF) cell. Permeation experiments are performed using a laboratory-made UF cellulose acetate membrane, characterised by an hydraulic permeability of 2.05 x 10~(-11) m/s/Pa and a molecular weight cut-off of 30 kDa. The simulation of the UF operating conditions with recourse to computer fluid dynamics allows the prediction of the selective permeation performance in terms of permeation fluxes and concentration polarization. The predictions of the permeation fluxes based on different mass transport assumptions are compared with experimental ones and a good agreement is obtained.
机译:这项工作解决了在超滤(UF)池的狭缝进料通道中三元溶液(水/溶菌酶/氯化钠)的传质建模。渗透实验是使用实验室制造的超滤醋酸纤维素膜进行的,其特征是水渗透率为2.05 x 10〜(-11)m / s / Pa,截留分子量为30 kDa。利用计算机流体动力学对超滤运行条件进行模拟,可以根据渗透通量和浓度极化来预测选择性渗透性能。将基于不同传质假设的渗透通量预测结果与实验结果进行了比较,取得了良好的一致性。

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