用超滤膜过滤聚乙二醇分子

N.V. Churaev, M.I. Eman
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引用次数: 0

摘要

采用反渗透分离理论描述了超滤膜对分子量为1500 ~ 20000的聚乙二醇(PEG)分子的截除率。将实验数据与理论数据进行比较,可以得到膜的平衡分配系数γ、孔半径、膜活性层的厚度和孔隙度、扩散系数、浓极化层的厚度等参数。研究了超滤的最佳工艺条件。PEG分子的排斥作用可以用结构斥力作用的表面力理论来解释。利用DLVO理论,估计了带电膜的最佳孔径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rejection of poly(ethylene glycol) molecules by an ultrafiltration membrane

The theory of reverse-osmosis separation was used to describe the rejection of poly(ethylene glycol) (PEG) molecules (molecular weight 1500–20 000) by ultrafiltration membranes.

Comparison of experimental data with theory allows us to obtain parameters such as the equilibrium partition coefficient γ, pore radius, thickness and porosity of the active layer of the membrane, coefficient of diffusion, and the thickness of the layer of concentration polarization. The optimum conditions for ultrafiltration are considered.

Rejection of PEG molecules may be explained in terms of the theory of surface forces by the action of forces of structural repulsion. Using the DLVO theory, the optimal pore sizes for charged membranes were estimated.

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