Shahgodari Shirin, Labanda Jordi, Llorens Joan
Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Martí i Franquès 1, 08028 Barcelona, Spain.
Membranes (Basel). 2023 Jun 29;13(7):631. doi: 10.3390/membranes13070631.
The nanofiltration performance of three commercial membranes was analyzed by the Steric Pore Model (SPM) and the extended Nernst-Planck diffusion equation inside membrane pores. The model was completed with the equation to predict the concentration polarization, and the mass transfer coefficient was determined by considering the presence of a feed spacer. The model parameters that characterized the performance of the membrane were the hydrodynamic coefficient, which accounts for the possible variations in solute size and membrane pore radius, the effective membrane thickness, and the water permeability coefficient. All experiments were conducted at fixed feed pH of 6. The rejections of uncharged solutes (glucose for membranes with a high molecular weight cut-off (MWCO) and glycerol and ethylene glycol for membranes with a low MWCO) allowed the model parameters to be determined. We found that glycerol and ethylene glycol overestimate the membrane pore radius due to their ability to interact with the membrane matrix. Therefore, the rejection of glycine as a small amino acid was explored to characterize the membranes with low MWCO since these molecules do not interact with the membrane matrix and have an almost zero charge at pH values between 4.5 and 6.5. Based on the experimental rejections, it was stated that glucose and glycine could be separated by these membranes operating in continuous diafiltration mode.
采用空间位阻孔模型(SPM)和膜孔内扩展的能斯特-普朗克扩散方程对三种商用膜的纳滤性能进行了分析。该模型通过预测浓差极化的方程得以完善,传质系数则通过考虑进料间隔物的存在来确定。表征膜性能的模型参数包括流体动力学系数(该系数考虑了溶质尺寸和膜孔半径的可能变化)、有效膜厚度以及水渗透系数。所有实验均在固定进料pH值为6的条件下进行。通过对不带电溶质的截留率(对于高分子量截留(MWCO)的膜为葡萄糖,对于低MWCO的膜为甘油和乙二醇)来确定模型参数。我们发现,甘油和乙二醇由于其与膜基质相互作用的能力而高估了膜孔半径。因此,研究了甘氨酸作为一种小氨基酸的截留率,以表征低MWCO的膜,因为这些分子不与膜基质相互作用,并且在pH值为4.5至6.5之间时电荷几乎为零。基于实验截留率,表明这些膜在连续渗滤模式下运行时可以分离葡萄糖和甘氨酸。