CORRELATION OF SEPARATION FACTOR VERSUS PERMEABILITY FOR POLYMERIC MEMBRANES

被引:2880
作者
ROBESON, LM
机构
[1] Air Products and Chemicals, Inc., Allentown
关键词
GAS SEPARATION; SEPARATION FACTOR; PERMEABILITY; THEORY DATA ANALYSIS; GAS DIFFUSIVITY;
D O I
10.1016/0376-7388(91)80060-J
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The separation of gases utilizing polymeric membranes has emerged into a commercially utilized unit operation. It has been recognized in the past decade that the separation factor for gas pairs varies inversely with the permeability of the more permeable gas of the specific pair. An analysis of the literature data for binary gas mixtures from the list of He, H-2, O2, N2, CH4, and CO, reveals an upper bound relationship for these mixtures. The upper bound can be represented by a log-log plot of alpha-ij (separation factor = P(i)/P(j)) versus P(i) (where P(i) = permeability of the more permeable gas). Above the linear upper bound on the log-log plot, virtually no values exist. The slope of this line (n) from the relationship P(i) = k-alpha-ij(n) can be related to the difference between the gas molecular diameters DELTA-d(ji) (d(j)-d(i) where the gas molecular diameter chosen is the Lennard-Jones kinetic diameter. This relationship yields linearity for a plot of - 1/n versus DELTA-d(ji), and the line passes through (0,0) for the x-y plot thus providing further verification of this analysis. These results indicate that the diffusion coefficient governs the separating capabilities of polymers for these gas pairs. As the polymer molecular spacing becomes tighter the permeability decreases due to decreasing diffusion coefficients, but the separation characteristics are enhanced.
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页码:165 / 185
页数:21
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