Claims
- 1. A hollow fiber polymer membrane, comprising:
a) a crosslinked polymer continuous phase; and b) a molecular sieve material dispersed within said continuous phase; wherein said membrane has a CO2 permeance of at least 20 GPU and a CO2/CH4 selectivity of greater than 20, at 35 degrees C. and a pressure of 100 psia.
- 2. A hollow fiber mixed matrix polymer membrane, comprising:
a) a continuous phase polymer comprising a polyimide having crosslinkable sites; and b) a molecular sieve material dispersed within said continuous phase polymer; wherein the ratio of crosslinkable sites to imide groups is between 3:8 and 1:16.
- 3. A hollow fiber mixed matrix polymer membrane material, comprising:
a molecular sieve dispersed within a continuous polymer phase wherein said continuous polymer phase comprises a polyimide polymer made from the monomers A+B+C; where A is a dianhydride of the formula; 8where X1 and X2 are independently a halogenated alkyl group, phenyl or halogen; where R1, R2, R3, R4, R5, and R6 are independently H, alkyl, or halogen; where B is a diamino cyclic compound without a carboxylic acid functionality; where C is a diamino cyclic compound with a carboxylic acid functionality; and wherein the ratio of B to C is between 1:4 and 8:1.
- 4. The hollow fiber polymer membrane of claim 1 wherein the molecular sieve material dispersed within said continuous phase has an average particle size of less than about 1 micron.
- 5. The hollow fiber polymer membrane material of claim 3 where X1 and X2 are CF3.
- 6. The hollow fiber polymer membrane material of claim 3 where R1, R2, R3, R4, R5, and R6 are H.
- 7. The hollow fiber polymer membrane material of claim 3 wherein the dianhydride is 6FDA.
- 8. The hollow fiber polymer membrane material of claim 3 wherein C is DABA.
- 9. The hollow fiber polymer membrane material of claim 3 wherein B is a diamino aromatic compound.
- 10. The hollow fiber polymer membrane material of claim 3 wherein B is a diamino benzene compound having one or more methyl groups attached to the benzene ring.
- 11. The hollow fiber polymer membrane material of claim 3 wherein the ratio of B to C is between 17:3 and 3:2.
- 12. The hollow fiber polymer membrane material of claim 3 wherein the ratio of B to C is between 17:3 and 3:1.
- 13. The hollow fiber polymer membrane material of claim 3 wherein said membrane is subjected to esterification conditions in the presence of a diol selected from the group consisting of ethylene glycol, propylene glycol, 1,3 propanediol, 1,4 butanediol, 1,2 butanediol, benzenedimethanol, and 1,3 butanediol to form a hollow fiber polymer membrane monoester.
- 14. The hollow fiber polymer membrane material of claim 13 wherein at least 60% of the carboxylic acid functionality is converted to a monoester.
- 15. The hollow fiber polymer membrane material of claim 13 wherein the hollow fiber membrane monoester is subjected to transesterification conditions to form a crosslinked hollow fiber polymer membrane.
- 16. The hollow fiber polymer membrane of claim 1 wherein the molecular sieve material dispersed within said continuous phase has an average particle size of less than about 0.1 micron.
- 17. The hollow fiber polymer membrane material of claim 3 wherein B is diamino durene.
- 18. The hollow fiber polymer membrane of claims 1, 2 and 3 wherein the molecular sieve is a zeolite.
- 19. The hollow fiber polymer membrane of claims 1, 2 and 3 wherein the molecular sieve is carbon molecular sieve.
- 20. The hollow fiber polymer membrane of claims 1, 2 and 3 wherein the molecular sieve is a aluminophosphate zeolite.
- 21. The hollow fiber polymer membrane of claims 1, 2 and 3 wherein the molecular sieve is a borosilicate.
- 22. The hollow fiber polymer membrane of claims 1, 2 and 3 wherein the molecular sieve is a SAPO.
- 23. A method of making a crosslinked hollow fiber membrane, comprising:
preparing a continuous phase polyimide polymer comprising a predetermined quantity of crosslinkable sites and a molecular sieve material dispersed within said continuous phase polymer; forming a hollow fiber from said continuous phase polyimide polymer; treating the hollow fiber with a diol selected from the group consisting of ethylene glycol, propylene glycol, 1,3 propanediol, 1,4 butanediol, 1,2 butanediol, and 1,3 butanediol, at esterification conditions, to form a monoesterified hollow fiber; and subjecting the monoesterified hollow fiber to transeesterification conditions to form a crosslinked hollow fiber membrane.
- 24. A method of making a crosslinked hollow fiber membrane, comprising:
preparing a polyimide polymer comprising a predetermined quantity of crosslinkable sites and a molecular sieve material dispersed within said continuous phase polymer; treating the polyimide polymer with a diol selected from the group consisting of ethylene glycol, propylene glycol, 1,3 propanediol, 1,4 butanediol, 1,2 butanediol, and 1,3 butanediol, at esterification conditions, to form a monoesterified membrane material; forming a monoesterified hollow fiber from the monoesterified membrane material; and subjecting the monoesterified hollow fiber to transesterification conditions to form a crosslinked hollow fiber membrane.
- 25. The hollow fiber polymer membrane material of claim 13 wherein at least 80% of the carboxylic acid functionality is converted to a monoester.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation in part of U.S. Ser. No. 10/032,315 filed on Dec. 20, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10032315 |
Dec 2001 |
US |
Child |
10323090 |
Dec 2002 |
US |