Claims
- 1. A method for dehydrogenating a dehydrogenatable hydrocarbon comprising contacting the hydrocarbon, at dehydrogenation conditions, with a catalytic composite comprising a porous carrier material containing, on an elemental basis, about 0.01 to about 2 wt. % platinum or palladium, about 0.01 to about 2 wt. % rhodium, and about 0.05 to about 5 wt. % cobalt; wherein the platinum or palladium, rhodium and catalytically available cobalt are uniformly dispersed throughout the porous carrier material; wherein substantially all of the platinum or palladium and rhodium are present in the elemental metallic state; and wherein substantially all of the catalytically available cobalt is present in the elemental metallic state or in a state which is reducible to the elemental metallic state under dehydrogenation conditions or in a mixture of these states.
- 2. A method as defined in claim 1 wherein the dehydrogenatable hydrocarbon is admixed with hydrogen when it contacts the catalytic composite.
- 3. A method as defined in claim 1 wherein the porous carrier material is a refractory inorganic oxide.
- 4. A method as defined in claim 3 wherein the refractory inorganic oxide is alumina.
- 5. A method as defined in claim 1 wherein the dehydrogenatable hydrocarbon is a normal paraffin hydrocarbon containing 4 to 30 carbon atoms per molecule.
- 6. A method as defined in claim 1 wherein the dehydrogenatable hydrocarbon is a naphthene.
- 7. A method as defined in claim 1 wherein the dehydrogenatable hydrocarbon is an alkylaromatic, the alkyl group of which contains about 2 to 6 carbon atoms.
- 8. A method as defined in claim 2 wherein the dehydrogenation conditions include a temperature of 700.degree. to about 1200.degree. F., a pressure of 0.1 to 10 atmospheres, a LHSV of 1 to 40 hr..sup.-1, and a hydrogen to hydrocarbon mole ratio of about 1:1 to about 20:1.
- 9. A method as defined in claim 1 wherein the composite contains, on an elemental basis, about 0.05 to about 1 wt. % platinum or palladium, about 0.05 to about 1 wt. % rhodium and about 0.1 to about 2.5 wt. % cobalt.
- 10. A method as defined in claim 1 wherein the metals content of the catalytic composite is adjusted so that the atomic ratio of rhodium to platinum or palladium is about 0.1:1 to about 2:1 and the atomic ratio of cobalt to platinum or palladium is about 0.1:1 to about 66:1.
- 11. A method as defined in claim 1 wherein the catalytic composite contains, on an elemental basis, about 0.01 to about 5 wt. % Group IVA metal and wherein substantially all of the Group IVA metal is present in an oxidation state above that of the corresponding elemental metal.
- 12. A method as defined in claim 11 wherein the Group IVA metal is germanium.
- 13. A method as defined in claim 11 wherein the Group IVA metal is tin.
- 14. A method as defined in claim 11 wherein the Group IVA metal is lead.
- 15. A method as defined in claim 2 wherein substantially all of the catalytically available cobalt is present in the elemental metallic state after the method is started-up and lined-out at dehydrogenation conditions.
- 16. A method as defined in claim 1 wherein the catalytic composite is prepared and maintained in a sulfur-free state.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of our prior, copending application Ser. No. 687,135 filed May 17, 1976 now U.S. Pat. No. 4,018,669, which in turn is a continuation-in-part of our prior application Ser. No. 522,209 filed Nov. 8, 1974 and issued June 1, 1976 as U.S. Pat. No. 3,960,710. All of the teachings of these prior applications are specifically incorporated herein by reference.
US Referenced Citations (6)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
687135 |
May 1976 |
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Parent |
522209 |
Nov 1974 |
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