Claims
- 1. A process for converting carbon dioxide into carbon monoxide and water, comprising
- (a) establishing a thermally homogeneous gaseous admixture medium including carbon dioxide and hydrogen by in situ combustion of a carbonaceous source, hydrogen and oxygen in a first zone A by forming an axially symmetrical helical flow with at least one of the carbonaceous source hydrogen and oxygen in gaseous form and rectilinearly introducing the other of said carbonaceous source, hydrogen and oxygen within said helical flow, the homogeneous gaseous admixture medium being brought to a temperature of at least 800.degree. C. by the heat of in situ combustion within a period of time essentially insufficient for the production of carbon monoxide therefrom;
- (b) autogeneously reducing said carbon dioxide under reaction equilibrium conditions to carbon monoxide and water by reaction with the hydrogen, with each molecule of carbon monoxide formed having, or essentially instantaneously being brought to, a temperature of at least 800.degree. C.; and
- (c) cooling the autogeneous reduction product in a second zone B so as to maintain the reaction equilibrium composition thereof.
- 2. The process as defined by claim 1, wherein carbon dioxide is introduced during in situ combustion to act as a thermal diluent and to provide additional carbon dioxide in said thermally homogeneous gaseous admixture medium.
- 3. The process as defined by claim 1, wherein said carbonaceous source comprises carbon dioxide.
- 4. The process as defined by claim 1, wherein said carbonaceous source comprises a hydrocarbon.
- 5. The process as defined by claim 1, wherein said carbonaceous source comprises charcoal or coal.
- 6. The process as defined in claim 1, wherein said in situ combustion is of a carbonaceous source, oxygen and a stoichiometric excess of hydrogen.
- 7. The process as defined by claim 1, wherein the thermally homogeneous gaseous admixture medium is axially symmetrically and helically flowing downstream in said first zone A of reaction, with combustion being initiated therein by ignition means, and said abrupt cooling being effected at the second zone.
- 8. The process as defined by claim 1, wherein said thermally homogeneous gaseous admixture medium is brought to a temperature ranging from 800.degree. to 1300.degree. C.
- 9. The process as defined by claim 1, wherein said abrupt cooling is effected by cocurrent contact with a cold transfer fluid.
- 10. The process as defined by claim 9, wherein said cold transfer fluid comprises water.
- 11. The process as defined by claim 1, wherein at least one component of said thermally homogeneous gaseous admixture medium is pre-heated.
- 12. The process as defined by claim 1, wherein the product of reaction comprises both carbon monoxide and hydrogen.
- 13. The process as defined by claim 8, wherein at least 75% of reduction reaction equilibrium conditions are established within 110 second.
- 14. The process as defined by claim 8, wherein at least 85% of reduction reaction equilibrium conditions are established in no more than 1 second.
- 15. The process as defined by claim 1, wherein said reduction reaction is uncatalyzed.
Priority Claims (1)
Number |
Date |
Country |
Kind |
83 08392 |
May 1983 |
FRX |
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Parent Case Info
This application is a continuation of application Ser. No. 612,473, filed May 21, 1984, now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (2)
Number |
Date |
Country |
326227 |
Mar 1930 |
GBX |
521415 |
May 1940 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
612473 |
May 1984 |
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