IP Library › Granted Patent US 10,232,319
Granted Patent B2
US 10,232,319 · App. 15/503,228 · Granted Mar 19, 2019

Composition for CO

Inventors: Yudai Ota (Osaka, JP); Yoshihito Okubo (Phoenix, AZ); Osamu Okada (Kyoto, JP); Nobuaki Hanai (Kyoto, JP); Peng Yan (Kyoto, JP); Yasato Kiyohara (Kyoto, JP); Atsushi Yamamoto (Osaka, JP)
Assignees: SUMITOMO CHEMICAL COMPANY, LIMITED; RENAISSANCE ENERGY RESEARCH CORPORATION
B01D67/0088B01D53/22B01D53/228B01D63/00B01D63/10B01D69/00B01D69/10B01D69/12B01D71/02B01D71/022B01D71/32B01D71/36B01D71/38B01D71/40B01D71/64B01D71/66B01D71/68Y02C10/10Y02P20/152
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Quick Facts
Patent No.
US 10,232,319
App. No.
15/503,228
Granted
Mar 19, 2019
Kind
B2
Abstract

The present invention provides a composition for a CO 2 gas separation membrane containing: at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide; a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof.

Claims (67)

1. A method for separating CO 2 , comprising:

feeding a gas mixture that contains at least CO 2 and water vapor on a surface side of a CO 2 gas separation membrane; and

separating CO 2 from said gas mixture through the other surface side of said gas separation membrane, wherein

the CO 2 gas separation membrane comprises a separation-functional layer containing a composition for a CO 2 gas separation membrane; and

a supporting layer including a porous membrane, wherein

the composition for a CO 2 gas separation membrane comprises at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide;

a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and

a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof,

wherein the non-crosslinked polymer content is 2 wt % to 90 wt % based on the total amount of the crosslinked polymer and the non-crosslinked polymer.

2. A CO 2 gas separation membrane module comprising

a spiral-wound element having a structure wherein a laminate is wrapped around an outer periphery of a hollow gas-collecting tube with a plurality of holes formed in a wall surface of the tube, the laminate including a CO 2 gas separation membrane, a feed-side channel member serving as a flow channel for a gas component to be fed, and a permeation-side channel member serving as a flow channel for a gas component that has permeated through the CO 2 gas separation membrane, wherein

the CO 2 gas separation membrane comprises a separation-functional layer containing a composition for the CO 2 gas separation membrane; and

a supporting layer including a porous membrane, wherein

the composition for a CO 2 gas separation membrane comprises at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide;

a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and

a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof,

wherein the non-crosslinked polymer content is 2 wt % to 90 wt % based on the total amount of the crosslinked polymer and the non-crosslinked polymer.

3. A CO 2 gas separation apparatus comprising:

the CO 2 separation membrane module according to claim 2 ; and

a gas feeding part for feeding a gas mixture that contains at least CO 2 and water vapor to said CO 2 separation membrane module.

4. The CO 2 gas separation membrane module according to claim 2 , wherein

the non-crosslinked polymer content is 2 wt % to 80 wt % based on the total amount of the crosslinked polymer and the non-crosslinked polymer.

5. A composition for a CO 2 gas separation membrane comprising:

at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide;

a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked;

a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof; and

a CO 2 hydration catalyst.

6. A method for separating CO 2 , comprising:

feeding a gas mixture that contains at least CO 2 and water vapor on a surface side of the CO 2 gas separation membrane; and

separating CO 2 from said gas mixture through the other surface side of said gas separation membrane, wherein

the CO 2 gas separation membrane comprises a separation-functional layer containing a composition for a CO 2 gas separation membrane; and

a supporting layer including a porous membrane, wherein

the composition for a CO 2 gas separation membrane comprises at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide;

a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and

a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof.

7. A CO 2 gas separation membrane module comprising

a spiral-wound element having a structure wherein a laminate is wrapped around an outer periphery of a hollow gas-collecting tube with a plurality of holes formed in a wall surface of the tube, the laminate including a CO 2 gas separation membrane, a feed-side channel member serving as a flow channel for a gas component to be fed, and a permeation-side channel member serving as a flow channel for a gas component that has permeated through the CO 2 gas separation membrane, wherein

the CO 2 gas separation membrane comprises a separation-functional layer containing a composition for a CO 2 gas separation membrane; and

a supporting layer including a porous membrane, wherein

the composition for a CO 2 gas separation membrane comprises at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide;

a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and

a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof.

8. A CO 2 gas separation apparatus comprising:

the CO 2 separation membrane module according to claim 7 ; and

a gas feeding part for feeding a gas mixture that contains at least CO 2 and water vapor to said CO 2 separation membrane module.

9. The CO 2 gas separation membrane module according to claim 2 , wherein

the non-crosslinked polymer comprises a structural unit having one or more functional groups selected from the group consisting of a carboxyl group, a hydroxy group and a carbamoyl group, and the structural unit has a total content of 50 mol % to 100 mol % based on the total amount of all structural units included in the non-crosslinked polymer.

10. The CO 2 gas separation membrane module according to claim 2 , wherein

the crosslinked polymer in which a polymer having a carboxyl group has been crosslinked comprises a structural unit derived from acrylic acid, methacrylic acid, or a derivative thereof.

11. The CO 2 gas separation membrane module according to claim 2 , wherein

the at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide is a carbonate, bicarbonate or hydroxide of at least one alkali metal selected from the group consisting of Na, K, Rb and Cs.

12. The CO 2 gas separation membrane module according to claim 2 , wherein

the at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide is cesium carbonate or cesium hydroxide.

13. The CO 2 gas separation membrane module according to claim 11 , wherein

the composition further comprises lithium carbonate or lithium hydroxide.

14. The CO 2 gas separation membrane module according to claim 2 , wherein

the composition further comprises a CO 2 hydration catalyst.

15. The CO 2 gas separation membrane module according to claim 2 , wherein

the composition comprises totally 1 mole equivalent to 6 mole equivalents of alkali metal cations based on the total amount of the carboxyl group and carboxylate included in said crosslinked polymer and said non-crosslinked polymer.

16. The CO 2 gas separation membrane module according to claim 2 , wherein

said porous membrane is made from at least one material selected from the group consisting of ceramic, a fluorine-containing resin, polyphenylene sulfide, polyether sulfone, and polyimide.

17. The CO 2 gas separation membrane module according to claim 2 , wherein

said porous membrane has pores with an average pore diameter of 0.005 um to 1.0 um.

18. The CO 2 gas separation membrane module according to claim 2 , prepared by a process comprising the steps of:

preparing a coating liquid by dissolving, in a medium, a composition for a CO 2 separation membrane comprising: at least one compound selected from the group consisting of an alkali metal carbonate, an alkali metal bicarbonate, and an alkali metal hydroxide; a crosslinked polymer in which a polymer having a carboxyl group has been crosslinked; and a non-crosslinked polymer obtained by polymerization of one or more monomers selected from the group consisting of vinyl acetate, acrylic acid, methacrylic acid, and a derivative thereof;

forming a coating film by applying the prepared coating liquid onto a supporting layer including a porous membrane; and

forming a separation-functional layer by removing the medium from the formed coating film.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2024
From: SUMITOMO CHEMICAL COMPANY, LIMITED
To: RENAISSANCE ENERGY RESEARCH CORPORATION
Reel/Frame 068965/0726 →
CHANGE OF ADDRESS Recorded Sep 5, 2024
From: SUMITOMO CHEMICAL COMPANY, LIMITED
To: SUMITOMO CHEMICAL CO., LTD.
Reel/Frame 068846/0196 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2017
From: OTA, YUDAI; OKUBO, YOSHIHITO; OKADA, OSAMU; HANAI, NOBUAKI; YAN, PENG; KIYOHARA, YASATO; YAMAMOTO, ATSUSHI
To: SUMITOMO CHEMICAL COMPANY, LIMITED; RENAISSANCE ENERGY RESEARCH CORPORATION
Reel/Frame 041227/0831 →
Priority Claims (1)
JP 2014-163493 · Aug 11, 2014 · national
Continuity (1)
Related Publication 20170232398A1 · Aug 17, 2017