Claims
- 1. A method for producing a hydrogen-rich gas which comprises:
contacting a carbon monoxide containing gas with a water gas shift catalyst in the presence of water at a temperature of less than about 260° C., wherein the water gas shift catalyst comprises: a) at least one of Pt, Ru, their oxides and mixtures thereof; and b) Na, its oxides or mixtures thereof.
- 2. A method according to claim 1, wherein the water gas shift catalyst further comprises Li, its oxides or mixtures thereof.
- 3. A method according to claim 1, wherein the water gas shift catalyst comprises:
a) Pt, its oxides or mixtures thereof; and b) Na, its oxides or mixtures thereof.
- 4. A method according to claim 1, wherein the water gas shift catalyst comprises:
a) Ru, its oxides or mixtures thereof; and b) Na, its oxides or mixtures thereof.
- 5. A method according to claim 1, wherein the carbon monoxide containing gas is a syngas.
- 6. A method according to claim 2, wherein the water gas shift catalyst comprises:
a) Pt, its oxides or mixtures thereof; b) Na, its oxides or mixtures thereof; and c) Li, its oxides or mixtures thereof.
- 7. A method according to claim 2, wherein the water gas shift catalyst comprises:
a) Ru, its oxides or mixtures thereof; b) Na, its oxides or mixtures thereof, and c) Li, its oxides or mixtures thereof.
- 8. A method according to claim 1, wherein the water gas shift catalyst is supported on a carrier comprising at least one member selected from the group consisting of alumina, zirconia, titania, ceria, magnesia, lanthania, niobia, yttria and iron oxide, and mixtures thereof.
- 9. A method according to claim 8, wherein the alumina is doped with Zr.
- 10. A method according to claim 8, wherein the carrier comprises zirconia.
- 11. A method according to claim 1, wherein the carbon monoxide containing gas is contacted with the water gas shift catalyst at a pressure of no more than about 50 bar.
- 12. A method according to claim 11, wherein the carbon monoxide containing gas is contacted with the water gas shift catalyst at a pressure of no more than about 15 bar.
- 13. A method according to claim 11, wherein the carbon monoxide containing gas is contacted with the water gas shift catalyst at a pressure of no more than about 1 bar.
- 14. A method according to claim 1, wherein the water gas shift catalyst comprises about 0.05 wt. % to about 10 wt. %, with respect to the total weight of all catalyst components plus the support material, of Pt or Ru present in the water gas shift catalyst.
- 15. A method according to claim 14, wherein the water gas shift catalyst comprises about 0.50 wt. % to about 6 wt. %, of Pt or Ru present in the water gas shift catalyst.
- 16. A catalyst for catalyzing the water gas shift reaction at a temperature of less than about 260° C. comprising:
a) at least one member selected from the group consisting of Pt, Ru, their oxides and mixtures thereof, and b) at least one member selected from the group consisting of Na, its oxides and mixtures thereof.
- 17. A catalyst according to claim 16, wherein the catalyst further comprises Li, its oxides, or mixtures thereof.
- 18. A catalyst according to claim 16, wherein the source of the Na is NaOH, Na2CO3 or NaHCO3.
- 19. A catalyst according to claim 17, wherein the source of the Li is LiOH.
- 20. A catalyst according to claim 16 comprising:
a) Pt, its oxides or mixtures thereof, and b) Na, its oxides or mixtures thereof.
- 21. A catalyst according to claim 16 comprising:
a) Ru, its oxides or mixtures thereof, and b) Na, its oxides or mixtures thereof.
- 22. A catalyst according to claim 17 comprising:
a) Pt, its oxides or mixtures thereof, b) Na, its oxides or mixtures thereof, and c) Li, its oxides or mixtures thereof.
- 23. A catalyst according to claim 17 comprising:
a) Ru, its oxides or mixtures thereof, b) Na, its oxides or mixtures thereof, and c) Li, its oxides or mixtures thereof.
- 24. A catalyst according to claim 16, wherein the catalyst composition is supported on a carrier comprising at least one member selected from the group consisting of alumina, silica, zirconia, titania, ceria, magnesia, lanthania, niobia, yttria and iron oxide, and mixtures thereof.
- 25. A catalyst according to claim 24, wherein the carrier comprises zirconia, alumina or silica.
- 26. A catalyst according to claim 24, wherein the water gas shift catalyst comprises about 0.05 wt. % to about 10 wt. %, with respect to the total weight of all catalyst components plus the support material, of Pt or Ru present in the water gas shift catalyst.
- 27. A catalyst according to claim 26, wherein the water gas shift catalyst comprises about 0.50 wt. % to about 6 wt. %, of Pt or Ru present in the water gas shift catalyst.
- 28. A fuel processing system for generation of a hydrogen-rich gas from a hydrocarbon or substituted hydrocarbon fuel, the fuel processing system comprising:
a fuel reformer for converting a fuel reactant stream comprising a hydrocarbon or a substituted hydrocarbon fuel to a reformed product stream comprising carbon monoxide and water, the fuel reformer having an inlet for receiving the reactant stream, a reaction chamber for converting the reactant stream to the product stream and an outlet for discharging the product stream; a water gas shift reactor for effecting a water gas shift reaction at a temperature of less than about 260° C., the water gas shift reactor comprising an inlet for receiving a water gas shift feed stream comprising carbon monoxide and water from the product stream of the fuel reformer, a reaction chamber comprising the water gas shift catalyst of claim 16, the water gas shift catalyst being effective for generating hydrogen and carbon dioxide from the water gas shift feed stream and an outlet for discharging the resulting hydrogen-rich gas; and a temperature controller adapted for maintaining the temperature of the reaction chamber of the water gas shift reactor at a temperature of less than about 300° C.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims benefit from earlier filed U.S. Provisional Application No. 60/434,707, filed Dec. 20, 2002, which is incorporated herein in its entirety by reference for all purposes. The present application also incorporates by reference the PCT International Patent Application No. ______ entitled “Alkali-Containing Catalyst Formulations for Low and Medium Temperature Hydrogen Generation” naming as inventors Hagemeyer et al. (Attorney Docket No. 708000901PCT) filed on the same date as the present application.
Provisional Applications (1)
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Number |
Date |
Country |
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60434707 |
Dec 2002 |
US |