Claims
- 1. A catalyst prepared by the method comprising the steps of (1) impregnating support particles with an aqueous impregnant solution comprising a dissolved Group VIB metal component, a dissolved Group VIII metal component and a dissolved phosphorus component, said aqueous impregnant solution containing about 1 to about 6 weight percent of said phosphurs component, calculated as P, said supported comprising a narrow pore size distribution including at least about 60 percent of the total pore volume in pores of diameter from about 60 to about 100 angstroms, having a mode pore diameter in the range from about 60 to about 90 angstroms and at least about 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 40 angstroms above the mode pore diameter and (2) calcining the impregnated support particles to produce a catalyst having a narrow pore size distribution including at least about 75 percent of the total pore volume in pores of diameter from about 70 to about 130 angstoms and less than 10 percent of the total pore volume in pores of diameter greater than 130 diameter angstroms, having a mode pore diameter in the range from about 75 to about 110 angstroms and at least about 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 90 angstroms above the mode pore diameter.
- 2. The catalyst defined in claim 1 wherein said impregnant solution comprises at least about 17 weight percent of a molybdenum component, calculated as MoO.sub.3.
- 3. The catalyst defined in claim 1 wherein said impregnant solution consists essentially of at least about 17 weight percent of a molbdenum component, calculated as MoO.sub.3, and about 1 to about 6 weight percent of a nickel or cobalt component, calculated as the monoxide.
- 4. The catalyst defined in claim 6 wherein said impregant solution contains dissolved molybdenum trioxide and nickel or cobalt carbonate in an aqueous solution containing phosphoric acid.
- 5. The catalyst defined in claim 1 wherein said impregnant solution contains dissolved ammonium heptamolybdate and nickel or cobalt nitrate in an aqueous solution of phosphoric acid.
- 6. The catalyst defined in claim 1 further comprising a total pore volume about 0.30 and 0.50 cc/gram and a total surface area between about 100 and 250 m.sup.2 /gram.
- 7. A catalyst containing at least one Group VIB metal component, at least one Group VIII metal component and about 1 to about 6 weight percent of a phosphorus component, calculated as P, and prepared with a porous refractory oxide support, said support comprising a narrow pore size distribution including at least about 60 percent of the total pore volume in pores of diameter from about 60 to about 100 angstroms, having a mode pore diameter in the range from about 60 to about 90 angstroms and at least about 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 40 angstroms above the mode pore diameter.
- 8. The catalyst defined in claim 7 wherein said support has a total pore volume from about 0.35 to about 0.8 cc/gram.
- 9. The catalyst defined in claim 7 wherein said support has at least 75 percent of said total pore volume being in pores of diameter from about 60 to about 100 angstroms.
- 10. The catalyst defined in claim 7 wherein said support has at least 50 percent of said total pore volume in pores of diameter from about 70 to about 90 angstroms.
- 11. The catalyst defined in claim 7 further comprising at least about 85 percent of the total surface area of said support in pores of diameter from about 50 to about 110 angstroms.
- 12. The catalyst defined in claim 7 further comprising at least about 5 percent of the total surface area of said support in pores of diameter in each of the 10 angstrom interval ranges of at least 50 but less than 60, at least 60 but less than 70, at least 70 but less than 80, at least 80 but less than 90, at least 90 but less than 100 and at least 100 but less than 110 angstroms.
- 13. The catalyst defined in claim 7 wherein said porous refractory oxide support consists essentially of gamma alumina.
- 14. The catalyst defined in claim 7 wherein said catalyst consists essentially of about 17 to about 25 weight percent of at least one molydenum component, about 1 to about 4 weight percent of at least one cobalt component and about 1 to about 4 weight percent of said phosphorus components.
- 15. A method for preparing a catalyst comprising a porous refractory oxide support, said method comprises compounding at least one Group VIB metal components, at least one Group VIII metal component and about 1 to about 6 weight percent of a phosphorus component, calculated as P, said support comprising a narrow pore size distribution including at least about 70 percent of the total pore volume in pores of diameter from about 60 to about 100 angstroms.
- 16. The method defined in claim 15 wherein said support has a mode pore diameter in the range from about 70 to about 90 angstroms.
- 17. The method defined in claim 16 wherein said support has at least about 40 percent of said total pore volume in pores of diameter between the mode pore diameter and less than about 40 angstroms above said mode pore diameter.
- 18. The method defined in claim 15 wherein said compounding comprises impregnating said support with a stable aqueous impregnant solution consisting essentially of at least about 17 weight percent of a dissolved molybdenum component, calculated as MoO.sub.3, and at least about 0.5 to about 10 weight percent of a dissolved cobalt component, calculated as CoO.
- 19. The method defined in claim 15 wherein said compounding comprises impregnating said support with a stable aqueous impregnant solution comprising molybdenum trioxide, cobalt carbonate and phosphoric acid.
- 20. The method as defined in claim 16 wherein said support has at least about 30 percent of the total pore volume in pores of diameter between the mode pore diameter and between the mode pore diameter and less than about 20 angstroms above said mode pore diameter.
- 21. A catalyst comprising at least one group VIB metal component, at least on Group VIII metal component, and about 1 to about 6 weight percent of a phosphorus component, calculated as P, on a porous refractory oxide support, said catalyst has a narrow pore size distribution including at least about 75 percent of the total pore volume in pores of diameter form about 70 to about 130 angstroms, and less than about 0.05 cc/gram of the total pore volume in pores of diameter greater than 130 angstroms, having a mode pore diameter in the range from about 75 to about 115 angstroms, and at least about 40 percent of the total pore volume in pores of diameter less than about 90 angstroms above the mode pore diameter.
- 22. The catalyst defined in claim 21 wherein at least about 0.3 cc/gram of said total pore volume is in pores of diameter from about 70 to about 130 angstroms.
- 23. The catalyst defined in claim 21 wherein at least about 8 percent of the total surface area is in pores of diameter in each of the 10 angstrom interval ranges of at least 70 but less than 80, at least 80 but less than 90, at least 90 but less than 100, at least 100 but less than 110, at least 110 but less than 120 and at least 120 but less than 130 angstroms.
- 24. The catalyst defined in claim 21 wherein at least about 80 percent of said total pore volume is in pores of diameter between about 25 angstroms above or below the mode pore diameter.
- 25. The catalyst defined in claim 21 further comprising at least about 75 percent of the total surface area in pores of diameter from about 70 to about 130 angstroms.
- 26. A hydrocarbon conversion catalyst comprising a Group VIB metal component, a Group VIII metal component and about 1 to about 6 weight percent of a phosphorus component, calculated as P, on a porous refractory oxide support, said catalyst having at least about 75 percent of the total pore volume in pores of diameter from about 70 to about 130 angstroms and less than about 10 percent of the total pore volume in pores of diameter greater than about 130 angstroms.
- 27. The catalyst defined in claim 26 wherein less than about 0.05 cc/gram of said total pore volume is in pores of diameter greater than 130 angstroms.
- 28. The catalyst defined in claim 26 having a mode pore diameter from about 75 to about 115 angstroms and at least about 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 90 angstroms above the mode pore diameter.
- 29. The catalyst defined in claim 26 wherein at least about 0.3 cc/gram of said total pore volume is in pores of diameter from about 70 to about 130 angstroms.
- 30. The catalyst defined in claim 26 consisting essentially of a cobalt or nickel component, a molybdenum component and a phosphorus component on said porous refractory oxide supoprt compriisng gamma alumina.
- 31. The catalyst defined in claim 26 having at least 8 percent of the total surface area in pores of diameter in each of the 10 angstroms interval ranges of at leat 70 but less than 80, at least 80 but less than 90, at least 90 but less than 100, at least 100 but less than 110, at least 110 but less than 120 and at least 120 but less than 130 angstroms.
- 32. A hydrodesulfurization catalyst consisting essentially of at least one molybdenum or tungsten component, at least one cobalt or nickel component and about 1 to about 6 weight percent of a phosphorus component, calculated as P, on a porous refractory oxide support containing alumina, said catalyst has a narrow pore size distribution including at least about 75 percent and at least 0.3 cc/gram of the total pore volume in pores of diameter from about 70 to about 130 angstroms and less than about 0.005 cc/gram of the total pore volume in pores of diameter greater than 130 angstroms.
- 33. The catalyst defined in claim 32 having a mode pore diameter from about 80 to about 110 angstroms and at least 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 50 angstroms above the mode pore diameter.
- 34. The catalyst defined in claim 32 wherein at least about 0.35 cc/gram of said total pore volume is in pores of diameter from about 70 to about 130 angstroms.
- 35. The catalyst defined in claim 32 comprising between about 17 and about 35 weight percent of a molybdenum component, calculated as MoO.sub.2.
- 36. The catalyst defined in claim 32 wherein said total pore volume is from about 0.3 to about 0.6 cc/gram.
- 37. The catalyst defined in claim 32 comprising a surface area between about 100 and 250 m.sup.2 /gram.
- 38. The catalyst defined in claim 32 wherein at least about 80 percent of said total pore volume is in pores of diameter in the range between about 25 angstroms above or below the mode pore diameter.
- 39. A desulfurization catalyst comprising about 17 to about 25 weight percent of a molybdenum component, calculated as MoO.sub.3, about 1 to about 6 weight percent of a cobalt component, calculated as CoO, and about 1 to about 6 weight percent of a phosphorus component, calculated as P, on a porous refractory oxide consisting essentially of gamma alumina, said catalyst has a narrow pore size distribution including at least about 75 percent and at least about 0.3 cc/gram of the total pore volume in pores of diameter from about 70 to about 130 angstroms, less than about 0.05 cc/gram of the total pore volume in pores of diameter greater than 130 angstroms, a mode pore diameter from about 80 to about 110 angstroms, and at least about 40 percent of the total pore volume in pores of diameter between the mode pore diameter and less than about 25 angstroms above the mode pore diameter.
- 40. The catalyst defined in claim 39 wherein said total pore volume is about 0.35 to about 0.50 cc/gram.
- 41. The catalyst defined in claim 39 having a surface area between about 125 and 225 m.sup.2 /gram.
- 42. The catalyst defined in claim 39 having at least 60 percent of said total surface area in pores of diameter from about 75 to about 125 angstroms.
- 43. The catalyst defined in claim 39 comprising at least about 40 percent of said total pore volume in pores of diameter between the mode pore diameter and less than about 25 angstroms below the mode pore diameter.
- 44. The catalyst defined in claim 39 wherein said catalyst comprises about 1 to about 4 weight percent of said cobalt component and about 1 to about 4 weight percent of said phosphorus component.
- 45. The catalyst defined in claim 30 wherein said catalyst comprises about 17 to about 25 weight percent of saidmolybdenum component, about 1 to about 4 weight percent of said cobalt component and about 1 to about 4 weight percent of said phosphorus component.
- 46. The catalyst defined in claim 32 comprising about 17 to about 25 weight percent of said molybdenum component, about 1 to about 4 weight percent of said cobalt or said nickel component, and about 1 to about 4 weight percent of said phosphorus component.
- 47. The catalyst defined in claim 22 wherein said Group VIB metal component comprises about 17 to about 25 weight percent of molybdenum components, said Group VIII metal component comprises about 1 to about 4 weight percent of nickel or cobalt components, and said catalyst comprises about 1 to about 4 weight percent of said phosphorus components.
Parent Case Info
This application is a continuation of application Ser. No. 688,726, filed Jan. 4, 1985, now abandoned, which is a division of application Ser. No. 482,920, filed Apr. 7, 1983, now U.S. Pat. No. 4,500,424.
US Referenced Citations (22)
Divisions (1)
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Number |
Date |
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Parent |
482920 |
Apr 1983 |
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Continuations (1)
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Number |
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688726 |
Jan 1985 |
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