IP Library › Granted Patent US 11,964,232
Granted Patent B2
US 11,964,232 · App. 17/515,666 · Granted Apr 23, 2024

Carbon dioxide recovery system and working electrode

Inventors: Hiroaki Umeda (Kariya, JP); Youhei Morimoto (Kariya, JP); Hiroki Takezaki (Kariya, JP); Satoshi Horike (Kyoto, JP)
Assignees: DENSO CORPORATION; KYOTO UNIVERSITY
B01D53/326C25B11/031C25B11/043
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Quick Facts
Patent No.
US 11,964,232
App. No.
17/515,666
Granted
Apr 23, 2024
Kind
B2
Abstract

Provided is a carbon dioxide recovery system that separates CO 2 from a CO 2 -containing gas containing CO 2 by an electrochemical reaction, and comprises an electrochemical cell comprising a working electrode containing a CO 2 adsorbent, and a counter electrode. Application of a voltage between the working electrode and the counter electrode causes electrons to be supplied from the counter electrode to the working electrode, and enables the CO 2 adsorbent to bind to CO 2 as electrons are supplied. The CO 2 adsorbent is a crystalline porous body, and has a molecular structure in which a functional group that exchanges electrons and binds to CO 2 is regularly arranged.

Claims (27)

1. A carbon dioxide recovery system that separates CO 2 from a CO 2 -containing gas which contains CO 2 by an electrochemical reaction, comprising:

an electrochemical cell comprising a working electrode containing a CO 2 adsorbent, and a counter electrode,

wherein application of a voltage between the working electrode and the counter electrode causes electrons to be supplied from the counter electrode to the working electrode, and enables the CO 2 adsorbent to bind to CO 2 as electrons are supplied,

the CO 2 adsorbent is a crystalline porous embody having a metal-organic framework,

the CO 2 adsorbent has a molecular structure in which a functional group that exchanges electrons and binds to CO 2 is regularly arranged at bridging portions of the crystalline porous body to regularly arrange the functional group in the crystalline porous body, and

the functional group arranged at the bridging portions contains F, O, N, Cl, or S.

2. The carbon dioxide recovery system according to claim 1 , wherein in the CO 2 adsorbent, the functional group is regularly arranged in a bridging portion of a crystal lattice.

3. The carbon dioxide recovery system according to claim 1 , wherein the functional group arranged at the bridging portions is a ketone group.

4. The carbon dioxide recovery system according to claim 3 , wherein the metal-organic framework has an Al ion coordinated with benzophenone dicarboxylate having a ketone group.

5. A carbon dioxide recovery system according to claim 1 , wherein the counter electrode includes an auxiliary material that exchanges electrons, and

application of a first voltage between the counter electrode and the working electrode, at which a potential of the counter electrode is higher than a potential of the working electrode, causes electrons to be supplied from the auxiliary material to the CO 2 adsorbent, and the CO 2 adsorbent to bind CO 2 .

6. The carbon dioxide recovery system according to claim 5 , wherein application of a second voltage, which is lower than the first voltage, between the counter electrode and the working electrode causes electrons to be supplied from the CO 2 adsorbent to the auxiliary material, and CO 2 adsorbed by the CO 2 adsorbent to be desorbed.

7. A carbon dioxide recovery system according to claim 1 , wherein the working electrode contains an electrically conductive material, and the electrically conductive material is in a mixed state with the CO 2 adsorbent.

8. The carbon dioxide recovery system according to claim 7 , wherein the electrically conductive material is constituted by a carbonaceous material.

9. A carbon dioxide recovery system according to claim 1 , wherein the working electrode contains an electrode base material having electrical conductivity, and

the CO 2 adsorbent is held in the electrode base material.

10. The carbon dioxide recovery system according to claim 9 , wherein the electrode base material is composed of a carbonaceous material or a metallic material, and has a porous structure in which pores are formed that the CO 2 -containing gas can pass through.

11. A carbon dioxide recovery system according to claim 9 , wherein the working electrode contains a binder for holding the CO 2 adsorbent in the electrode base material.

12. A carbon dioxide recovery system according to claim 1 , wherein an ion conductive material having ionic conductivity is provided between the working electrode and the counter electrode, and the ion conductive material is an ionic liquid or a solid electrolyte.

13. A carbon dioxide recovery system according to claim 1 , wherein an insulating layer which is not conductive is provided between the working electrode and the counter electrode.

14. A working electrode used in a carbon dioxide recovery system that separates CO 2 from a CO 2 -containing gas containing CO 2 by an electrochemical reaction, the carbon dioxide recovery system comprising an electrochemical cell comprising a working electrode, and a counter electrode, the working electrode comprising a CO 2 adsorbent,

wherein application of a voltage between the working electrode and the counter electrode causes electrons to be supplied from the counter electrode to the working electrode, and enables the CO 2 adsorbent to bind to CO 2 as electrons are supplied, and

the CO 2 adsorbent is a crystalline porous body having a metal-organic framework,

the CO 2 adsorbent has a molecular structure in which a functional group that exchanges electrons and binds to CO 2 is regularly arranged at bridging portions of the crystalline porous body to regularly arrange the functional group in the crystalline porous body, and

the functional group arranged at the bridging portions contains F, O, N, Cl, or S.

15. The carbon dioxide recovery system according to claim 1 , wherein in the crystalline porous body, the functional group that exchanges electrons can be regularly arranged inside the structure as a result of an organic ligand containing the functional group that exchanges electrons forming a coordination bond to a metal.

16. The carbon dioxide recovery system according to claim 1 , wherein in the crystalline porous body, the functional group that exchanges electrons can be regularly arranged inside the structure as a result of a monomer containing the functional group that exchanges electrons forming bonds to form a lattice.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE ASSIGNEE ADDRESS FOR THE SECOND INVNTOR PREVIOUSLY RECORDED AT REEL: 058164 FRAME: 0390. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 10, 2021
From: UMEDA, HIROAKI; MORIMOTO, YOUHEI; TAKEZAKI, HIROKI; HORIKE, SATOSHI
To: DENSO CORPORATION; KYOTO UNIVERSITY
Reel/Frame 058983/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2021
From: UMEDA, HIROAKI; MORIMOTO, YOUHEI; TAKEZAKI, HIROKI; HORIKE, SATOSHI
To: DENSO CORPORATION; KYOTO UNIVERSITY
Reel/Frame 058164/0390 →
Priority Claims (1)
JP 2020-182708 · Oct 30, 2020 · national
Continuity (1)
Related Publication 20220134278A1 · May 5, 2022
Cited By (2)
US 12,447,437 US 12,629,632