Claims
- 1. A process for enhancing the activity of a catalyst metal particulate for hydrogenation reactions comprising:
a) calcining said catalyst metal particulate in an oxidant-containing atmosphere under conditions sufficient to form a porous layer of oxides of said metal on a portion of the metal particulate; b) treating said calcined metal particulate having oxides thereon with a solution capable of oxidizing the metal of the calcined particulate and comprising a compound of a hydrogenation catalyst metal under conditions sufficient for the calcined particulate to absorb a volume of said solution equal to at least about 10% of the calculated pore volume of the calcined particulate; and c) activating said treated metal particulate with a hydrogen-containing gas at elevated temperature thereby forming a dispersed active metal catalyst.
- 2. A process in accordance with claim 1, wherein said catalyst metal particulate and said compound of said hydrogenation catalyst are independently selected from the group consisting of nickel, cobalt and ruthenium.
- 3. A process in accordance with claim 1, wherein said solution contains a compound of a promoter metal.
- 4. A process in accordance with claim 2, wherein said metal is cobalt.
- 5. A process in accordance with claim 3, wherein said promoter metal is selected from the group consisting of manganese, zinc, titanium, molybdenum, chromium, tungsten, rhenium, ruthenium, palladium and platinum.
- 6. A process in accordance with claim 1, wherein the calcining atmosphere in step a) is from about 10 ppm to 21% by volume oxygen with the remainder being an inert diluent gas.
- 7. A process in accordance with claim 1, wherein the solution in step b) contains a promoter metal for said hydrogenation catalyst metal.
- 8. A process in accordance with claim 1, wherein said compound of said metal in the solution in step b) is selected from the group consisting of nitrates, nitrites, nitrosyl compounds, permanganates, carboxylates and chelates.
- 9. A process in accordance with claim 1, wherein the solvent for the solution in step b) is water or water and an organic solvent miscible therewith.
- 10. A process in accordance with claim 1, wherein step b) is carried out at room temperature.
- 11. A process in accordance with claim 1, wherein the treated catalyst metal particulate formed in step b) is dried at a temperature of from about 50° to 150° C.
- 12. A process in accordance with claim 1 additionally including the steps of calcining the treated particles formed in step b) in an oxidant-containing atmosphere, sizing the resulting particles, comminuting agglomerates formed therein that are larger than about 250 microns, and retaining only particles at least about 10 microns.
- 13. A dispersed active metal catalyst particle produced by the process of claim 1.
- 14. A dispersed active metal catalyst particle produced by the process of claim 7.
- 15. A process for producing higher hydrocarbons by the hydrogenation of carbon monoxide by reaction with hydrogen at reaction conditions in the presence of a catalyst according to claim 1.
- 16. The process of claim 15 including upgrading the higher hydrocarbons by at least one of fractionation and conversion.
- 17. A process for producing higher hydrocarbons by the hydrogenation of carbon monoxide by reaction with hydrogen at reaction conditions in the presence of a catalyst according to claim 14.
- 18. The process of claim 17 including upgrading the higher hydrocarbons by at least one of fractionation and conversion.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/462,018 filed Apr. 11, 2003.
Provisional Applications (1)
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Number |
Date |
Country |
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60462018 |
Apr 2003 |
US |