Claims
- 1. A Fischer-Tropsch catalyst comprising a catalytically active metal selected from the group consisting of iron, cobalt, nickel, ruthenium, and combinations thereof, a support material comprising an inorganic, non-layered mesoporous crystalline phase with a composition represented by Mn/q(WaXbYcZdOh) where M is at least one ion selected from the group consisting of ammonium, sodium, potassium, and hydrogen, n is the charge of the composition excluding M expressed as oxides, q is the weighted molar average valence of M, n/q is the mole fraction of M, W is at least one divalent element, X is at least one trivalent element, Y is at least one tetravalent element, Z is at least one pentavalent, a, b, c, and d are mole fractions of W, X, Y to and Z, respectively, h is a number from 1 to 2.5, and (a+b+c+d) =1.
- 2. The catalyst of claim 1 wherein W is selected from the group consisting of manganese, iron, cobalt, magnesium, and combinations thereof.
- 3. The catalyst of claim 2 wherein W is cobalt.
- 4. The catalyst of claim 2 wherein X is selected from the group consisting of aluminum, boron, iron, gallium, and combinations thereof.
- 5. The catalyst of claim 4 wherein X is aluminum.
- 6. The catalyst of claim 4 wherein Y is selected from the group consisting of titanium, zirconium, hafnium, manganese, silicon, germanium, and combinations thereof.
- 7. The catalyst of claim 6 wherein Y is silicon.
- 8. The catalyst of claim 6 wherein Z is selected from the group consisting of niobium, tantalum, vanadium, phosphorus, and combinations thereof.
- 9. The catalyst of claim 8 wherein Z is phosphorus.
- 10. The catalyst of claim 1 wherein the sum (a+b+c) is greater than d and h is about 2.
- 11. The catalyst of claim 10 wherein a is 0 and d is 0.
- 12. The catalyst of claim 1 wherein the sum (a+b+c) is less than d, h is about 2.5, and Z is selected from the group consisting of Nb, Ta, and combinations thereof.
- 13. The catalyst of claim 1 wherein the support material comprises a mesoporous M415 molecular sieve.
- 14. The catalyst of claim 14 wherein the support material comprises MCM-41.
- 15. The catalyst of claim 14 wherein the support material comprises Si-MCM-41.
- 16. The catalyst of claim 14 wherein the support material comprises Al-MCM-41.
- 17. The catalyst of claim 14 wherein the catalytically active metal comprises from about 1 to about 50 weight percent of the total metal.
- 18. The catalyst of claim 17 wherein the catalytically active metal content is from about 1 to about 30 weight percent of the total metal.
- 19. The catalyst of claim 18 wherein the catalytically active metal comprises a combination of cobalt and ruthenium, the content of the catalytically active metal is from about 10 to about 30 weight percent of the total metal, and the ruthenium content is from about 0.001 to about 1 weight percent of the total metal.
- 20. The catalyst of claim 14 further comprising one or more promoters selected from the group consisting of Na, K, Rb, Cs, Mg, Ca, Sr, Ba, Cu, Ag, Au, Sc, Y, La, Ti, Zr, Hf, V, Nb, Ta, Rh, Pd, Os, Ir, Pt, Mn, B, P, and Re.
- 21. The catalyst of claim 20 wherein the catalytically active metal is selected from the group consisting of cobalt, ruthenium, and combinations thereof and wherein the one or more promoters are selected from the group consisting of Sc, Y and La, Ti, Zr, Hf, Rh, Pd, Os, Ir, Pt, Re, Nb, Cu, Ag, Mn, B, P, and Ta.
- 22. The catalyst of claim 21 wherein the content of the one or more promoters is from about 0.001 to about 1 weight percent of the support material.
- 23. The catalyst of claim 22 wherein the catalytically active metal is cobalt, the promoter is rhenium, and the cobalt content is from about 10 to about 30 weight percent.
- 24. The catalyst of claim 22 wherein the catalytically active metal is cobalt, the promoter is platinum, and the cobalt content is from about 10 to about 30 weight percent.
- 25. A Fischer-Tropsch catalyst comprising at least one catalytically active metal and a non-layered mesoporous support that exhibits an X-ray diffraction pattern after calcination that has at least one peak at a d-spacing of greater than 18 Ångstrom units.
- 26. The catalyst of claim 25 wherein the at least one catalytically active metal is selected from the group consisting of iron, cobalt, nickel, and ruthenium.
- 27. The catalyst of claim 26 wherein the support comprises a silica-based mesoporous M415 molecular sieve.
- 28. The catalyst of claim 27 wherein the support comprises purely siliceous MCM-41.
- 29. The catalyst of claim 28 wherein the support comprises MCM-41 in which some Si atoms have been replaced by Al atoms.
- 30. The catalyst of claim 27 wherein the catalytically active metal is a combination of cobalt and ruthenium, and the combined content of the cobalt and ruthenium is from about 10 to about 30 weight percent of the total metal content.
- 31. The catalyst of claim 30 wherein the ruthenium content is from about 0.001 to about 1 weight percent.
- 32. The catalyst of claim 27 further comprising one or more promoters selected from the group consisting of Na, K, Rb, Cs, Mg, Ca, Sr, Ba, Cu, Ag, Au, Sc, Y, La, Ti, Zr, Hf. V, Nb, Ta, Rh, Pd, Os, Ir, Pt, Mn, B, P, and Re.
- 33. The catalyst of claim 32 wherein the catalytically active metal is selected from the group consisting of cobalt, ruthenium, and combinations thereof, and wherein the one or more promoters are selected from the group consisting of Sc, Y and La, Ti, Zr, Hf, Rh, Pd, Os, Ir, Pt, Re, Nb, Cu, Ag, Mn, B, P, and Ta.
- 34. The catalyst of claim 33 wherein the content of the one or more promoters is from about 0.001 to about 1 weight percent of the support material.
- 35. The catalyst of claim 34 wherein the catalytically active metal is cobalt, the promoter is rhenium, and the cobalt content is from about 10 to about 30 weight percent.
- 36. The catalyst of claim 34 wherein the catalytically active metal is cobalt, the promoter is platinum, and the cobalt content is from about 10 to about 30 weight percent.
- 37. A method for preparing a Fischer-Tropsch catalyst comprising impregnating a support with a salt of a catalytically active metal selected from the group consisting of iron, cobalt, nickel, ruthenium, and combinations thereof, wherein the support comprises a non-layered mesoporous support that exhibits an X-ray diffraction pattern after calcination that has at least one peak at a d-spacing of greater than 18 Ångstrom units, and drying the impregnated support.
- 38. The method of claim 37 further comprising reducing the impregnated support with a hydrogen-containing stream.
- 39. The method of claim 38 further comprising oxidizing the impregnated support.
- 40. The method of claim 37 wherein the support is impregnated with a solution of zero valent cobalt in an organic solvent.
- 41. The method of claim 40 wherein the support is impregnated with a solution of Co2(CO)8 or Co2(CO)12 in an organic solvent.
- 42. The method of claim 38 wherein the support is impregnated with a molten metal nitrate.
- 43. The method of claim 42 wherein the support is impregnated with Co(NO3)2•6H2O.
- 44. The method of claim 38 wherein the support is impregnated with an aqueous solution of a soluble salt of the catalytically active metal.
- 45. The method of claim 44 wherein the soluble salt is selected from the group consisting of nitrates, acetates, acetylacetonates, and combinations thereof.
- 46. A process for producing hydrocarbons, comprising contacting a feed stream comprising hydrogen and carbon monoxide with a catalyst in a reaction zone maintained at conversion-promoting conditions effective to produce an effluent stream comprising hydrocarbons, wherein the catalyst comprises at least one catalytic metal for Fischer-Tropsch reactions, and a non-layered mesoporous support which exhibits an X-ray diffraction after calcination that has at least one peak at a d-spacing of greater than 18 Ångstrom units.
- 47. The process of claim 46 wherein the catalyst comprises 10 to 30 percent by weight of a combination of cobalt and ruthenium, where the ruthenium content is from about 0.001 to about 1 percent by weight.
- 48. The process of claim 46 wherein the catalyst comprises 10 to 30 percent by weight of a combination of cobalt and rhenium, where the rhenium content is from about 0.001 to about 1 percent by weight.
- 49. The process of claim 46 wherein the catalyst comprises 10 to 30 percent by weight of a combination of cobalt and platinum, where the platinum content is from about 0.001 to about 1 percent by weight.
- 50. The process of claim 46 wherein the mesoporous support is Si-MCM-41.
- 51. The process of claim 46 wherein the mesoporous support is Al-MCM-41.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional patent application Ser. No. 60/097,192, filed Aug. 20, 1998, U.S. provisional patent application Ser. No. 60/097,193, filed Aug. 20, 1998, and U.S. provisional patent application Ser. No. 60/097,194, filed Aug. 20, 1998, all of which are incorporated herein by reference in their entirety.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60097192 |
Aug 1998 |
US |
|
60097193 |
Aug 1998 |
US |
|
60097194 |
Aug 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09376873 |
Aug 1999 |
US |
| Child |
09990812 |
Nov 2001 |
US |