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Effects of molecular structure on the permeability and permselectivity of aromatic polyimides

✍ Scribed by Yuesheng Li; Xuqiang Wang; Mengxian Ding; Jiping Xu


Publisher
John Wiley and Sons
Year
1996
Tongue
English
Weight
598 KB
Volume
61
Category
Article
ISSN
0021-8995

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✦ Synopsis


Permeability coefficients of Hz, Oz, and Nz were measured under 10 atm at the temperature from ambient temperature up to 15OoC in a series of structurally different aromatic homoand copolyimides, which were prepared from 4,4'-oxydianiline (ODA) or 4,4'-methylene dianiline (MDA) with various aromatic dianhydrides. The study shows that the molecular structure of the polyimides strongly influences gas permeability and permselectivity. As a result, the permeability coefficients of the polyimide membranes for each gas vary by over two orders of magnitude. In general, among the polyimide membranes studied, the increase in permeability of polymers is accompanied by the decrease in permselectivity, and the MDA-based polyimide membranes have higher permeability than ODA-based ones. Among the polyimides prepared from bridged dianhydrides, the permeability coefficients to Hz, 0 2 , and Nz are progressively increased in the order BPDA < BTDA < ODPA -TDPA < DSDA < SiDA < GFDA, while Hz/Nz and Oz/Nz permselectivity coefficients are progressively decreased in the same order. The copolyimide membranes, which were prepared from 3,3',4,4'biphenyltetracarboxylic dianhydride (BPDA), bis(3,4-dicarboxyphenyl)dimethylsilane dianhydride (SiDA), and ODA, have favorable gas separation properties and are useful for Hz/N2 separation applications.


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