IP Library Granted Patent US 9,457,323
Granted Patent B2
US 9,457,323 · App. 14/163,484 · Granted Oct 4, 2016

Carbon dioxide separation member, method for producing same, and carbon dioxide separation module

Inventors: Yoshihiro Aburaya (Ashigarakami-gun, JP); Kazuki Yamazaki (Ashigarakami-gun, JP)
Assignee: FUJIFILM Corporation
B01D71/60B01D53/22B01D53/228B01D61/38B01D67/0088B01D69/02B01D69/142B01D69/148B01D71/022B01D71/36B01D71/46B01D71/52B01D71/58B01D71/02B01D2257/504B01D2323/30B01D2325/22B01D2325/34B01D2325/38Y02C10/10
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Quick Facts
Patent No.
US 9,457,323
App. No.
14/163,484
Granted
Oct 4, 2016
Kind
B2
Abstract

A carbon dioxide separation member is disclosed, which includes: a hydrophobic porous membrane that has heat resistance to a temperature of 100° C. or higher; and a polymer compound layer that is formed on a surface of the porous membrane, the polymer compound layer including moisture, and at least one carbon dioxide carrier selected from the group consisting of alkali metal carbonates, alkali metal bicarbonates, and alkali metal hydroxides, and having a cross-linked structure that is formed with a specific single crosslinkable group and includes a specific hydrolysis-resistant bond, wherein the carbon dioxide separation member selectively allows a carbon dioxide gas in a mixture of the carbon dioxide gas and a hydrogen gas to permeate therethrough under temperature conditions of from 100° C. to 250° C.

Claims (30)

1. A carbon dioxide separation member comprising:

a hydrophobic porous membrane that has a heat resistance of 100° C. or higher; and

a polymer compound layer that is formed on a surface of the porous membrane, the polymer compound layer including moisture, and at least one carbon dioxide carrier selected from the group consisting of alkali metal carbonates, alkali metal bicarbonates and alkali metal hydroxides, and

the polymer compound layer having a cross-linked structure that is formed with a single crosslinkable group selected from the following (A) group, the cross-linked structure including a hydrolysis-resistant bond selected from the following (B) group:

(A) group consists of —OH, —NH 2 , —Cl, —CN, —COOH, and an epoxy group, and

(B) group consists of an ether bond, an acetal bond, —NH—CH 2 —CH(OH) —, —O-M-O—, —NH—M-O—, a urethane bond, —CH 2 —CH(OH) —, and an amido bond, in which M represents Ti or Zr,

wherein the carbon dioxide separation member selectively allows a carbon dioxide gas in a mixture of the carbon dioxide gas and a hydrogen gas to permeate therethrough under temperature conditions from 100° C. to 250° C.

2. The carbon dioxide separation member according to claim 1 , wherein a polymer compound used for the formation of the polymer compound layer has —OH as a single crosslinkable group and has a weight average molecular weight of from 130,000 to 6,000,000.

3. The carbon dioxide separation member according to claim 2 , wherein the polymer compound is polyvinyl alcohol having a weight average molecular weight of from 130,000 to 6,000,000.

4. The carbon dioxide separation member according to claim 1 , wherein a polymer compound used for the formation of the polymer compound layer has —NH 2 as a single crosslinkable group and has a weight average molecular weight of from 10,000 to 6,000,000.

5. The carbon dioxide separation member according to claim 2 , wherein the cross-linked structure includes an ether bond formed by allowing a crosslinking agent, that is selected from di- or higher functional epoxy compounds, to react with the single crosslinkable group possessed by the polymer compound.

6. The carbon dioxide separation member according to claim 2 , wherein the cross-linked structure is a cross-linked structure formed by reacting 0.01 mol to 80 mol of a crosslinking agent with 100 mol of the single crosslinkable group possessed by the polymer compound.

7. The carbon dioxide separation member according to claim 4 , wherein the cross-linked structure includes an ether bond formed by allowing a crosslinking agent, that is selected from di- or higher functional epoxy compounds, to react with the single crosslinkable group possessed by the polymer compound.

8. The carbon dioxide separation member according to claim 4 , wherein the cross-linked structure is a cross-linked structure formed by reacting 0.01 mol to 80 mol of a crosslinking agent with 100 mol of the single crosslinkable group possessed by the polymer compound.

9. The carbon dioxide separation member according to claim 1 , wherein each of the alkali metal carbonates, the alkali metal bicarbonates, and the alkali metal hydroxides includes an alkaline metal atom selected from the group consisting of cesium, rubidium, potassium and sodium.

10. The carbon dioxide separation member according to claim 1 , wherein the polymer compound layer further includes a surfactant.

11. The carbon dioxide separation member according to claim 1 , wherein the polymer compound layer further includes a filler.

12. The carbon dioxide separation member according to claim 1 , wherein the polymer compound layer further includes a film formation suitability imparting agent.

13. The carbon dioxide separation member according to claim 1 , comprising, between the polymer compound layer and the hydrophobic porous membrane, a carrier diffusion suppressing layer that suppresses diffusion of the carbon dioxide carrier.

14. The carbon dioxide separation member according to claim 1 , wherein the hydrophobic porous membrane includes at least one selected from the group consisting of ceramics, polytetrafluoroethylene (PTFE), polyvinylidene fluoride, polyethersulfone (PES), polyphenylene sulfide (PPS), polysulfone (PSF), polyimide (PI), polypropylene (PP), polyetherimide and polyetheretherketone.

15. A method for producing the carbon dioxide separation member according to claim 1 , the method comprising:

coating, on the hydrophobic porous membrane having a heat resistance of 100° C. or higher, a casting liquid including:

at least one carbon dioxide carrier selected from the group consisting of alkali metal carbonates, alkali metal bicarbonates and alkali metal hydroxides,

an aqueous solution of a polymer compound having a single crosslinkable group selected from the following (A) group, and

a crosslinking agent; and

allowing the single crosslinkable group possessed by the polymer compound to react with the crosslinking agent in the casting liquid to form the polymer compound layer having the cross-linked structure that includes the hydrolysis-resistant bond selected from the following (B) group,

wherein (A) group consists of —OH, —NH 2 , —Cl, —CN, —COOH, and an epoxy group; and

(B) group consists of an ether bond, an acetal bond, —NH—CH 2 —CH(OH)—, —O-M-O—, —NH—M-O—, a urethane bond, -CH 2 —CH(OH) —, and an amido bond, in which M represents Ti or Zr.

16. The method for producing a carbon dioxide separation member according to claim 15 , wherein the polymer compound layer includes a polyvinyl alcohol gel having a cross-linked structure.

17. A carbon dioxide separation module comprising the carbon dioxide separation member according to claim 1 module comprising the carbon dioxide separation member according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2014
From: ABURAYA, YOSHIHIRO; YAMAZAKI, KAZUKI
To: FUJIFILM CORPORATION
Reel/Frame 032042/0496 →
Priority Claims (1)
JP 2011-167196 · Jul 29, 2011 · national
Continuity (2)
Continuation PCTJP2012068120 · Jul 17, 2012
Related Publication 20140137740A1 · May 22, 2014