Claims
- 1. A method for the extension of cycle length of a catalyst employed in the hydroprocessing of a heavy hydrocarbon liquid stream, the hydroprocessing occurring in a moving bed reactor system having at least one reaction zone and a pretreatment zone for presulfiding the catalyst, wherein the heavy hydrocarbon stream is upflowing through the reaction zone, which contains the at least partially presulfided catalyst which has been at least partially presulfided within the treatment zone.
- 2. The method of claim 2, the moving bed reactor system being selected from a group consisting of: (ii) a fixed bed reactor system; (ii) ebullated and expanded types of reactor systems which are capable of onstream catalyst replacement; (iii) a substantially packed-bed type reactor system having an onstream catalyst replacement system.
- 3. The method of claim 1, in which the heavy hydrocarbon liquid stream is an atmospheric residuum.
- 4. The method according to claim 1, wherein the catalyst is presulfided in the treatment zone by means of the following steps:
a) adding a volume of hydroprocessing catalyst to the treatment zone, which volume includes fresh hydroprocessing catalyst; b) heating the volume of hydroprocessing catalyst until the catalyst has a temperature ranging from 90° C. to 370° C.; and c) adding a presulfiding agent to the treatment zone to prepare presulfided catalyst.
- 5. The method according to claim 4, wherein hydroprocessing catalyst is sulfided at a temperature of 125° C. to 325° C.
- 6. The method according to claim 4, wherein the step of adding a volume of hydroprocessing catalyst to the treatment zone comprises:
a) preparing a slurry comprising a hydrocarbon liquid and a volume of hydroprocessing catalyst; b) adding the slurry comprising the hydrocarbon liquid and the hydroprocessing catalyst to the treatment zone; and c) removing at least a portion of the hydrocarbon liquid from the treatment zone.
- 7. The method according to claim 4, wherein the step of adding a presulfiding agent to the treatment zone comprises:
a) pressurizing the treatment zone which contains the hydroprocessing catalyst with a presulfiding agent at a pressure in the range of 0.2 to 24.2 MPa and a temperature in the range of 90° C. to 370° C. to produce at least partially presulfided catalyst; and b) removing at least a portion of the presulfiding agent from the treatment zone.
- 8. The method according to claim 7, wherein the presulfiding agent comprises a sulfur containing material selected from the group consisting of H2S and sulfur-containing materials which decompose at temperatures below about 370° C.
- 9. The method according to claim 8, wherein the presulfiding agent comprises H2S.
- 10. The method according to claim 9, wherein the presulfiding agent comprises a gaseous recycle stream containing H2 and H2S.
- 11. The method of claim 7, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 125° C. to 325° C. and at a pressure in the range of 5.0 MPa to 20 MPa.
- 12. The method of claim 11, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 150° C. to 285° C.
- 13. The method according to claim 4, wherein the step of adding a presulfiding agent to the treatment zone comprises:
a) adding a volume of hydroprocessing catalyst to the treatment zone, which volume includes fresh hydroprocessing catalyst; b) flowing a heated hydrocarbon liquid through the volume of hydroprocessing catalyst within the treatment zone until the catalyst has a temperature ranging from 90° C. to 145° C.; c) subsequently pressurizing the treatment zone at a pressure ranging from 0.2 MPa to 24.2 MPa (15-3500 psig); d) continuing to flow the heated hydrocarbon liquid through the catalyst in the treatment zone until the catalyst has a temperature ranging from 125° C. to 325° C.; e) flowing a presulfiding mixture through the catalyst in the treatment zone to prepare at least partially presulfided catalyst.
- 14. The method of claim 13, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 150° C. to 285° C.
- 15. A method for hydroprocessing a hydrocarbon feed stream that is upflowing through a hydroconversion reaction zone comprising the steps of:
a) introducing a hydrocarbon feed stream in the presence of hydrogen at a reaction pressure into a hydroconversion reaction zone which contains particulate hydroprocessing catalyst to commence upflowing of said hydrocarbon feed stream through said catalyst and to recover a reaction effluent therefrom; b) presulfiding a volume of hydroprocessing catalyst within a treatment zone to produce presulfided catalyst, wherein the catalyst is presulfided by means of the following steps:
(1) adding a volume of hydroprocessing catalyst to the treatment zone, which volume includes fresh hydroprocessing catalyst; (2) heating the volume of hydroprocessing catalyst until the catalyst has a temperature ranging from 90° C. to 370° C.; and (3) adding a sulfiding agent to the treatment zone to prepare presulfided catalyst; and c) adding at least a portion of the sulfided catalyst into the hydroconversion reaction zone while maintaining the reaction zone at the reaction pressure.
- 16. The method according to claim 15, wherein the step of adding at least a portion of the presulfided catalyst into the hydroconversion reaction zone comprises:
a) adding a hydrocarbon liquid to the presulfided catalyst in the treatment zone; b) forming a slurry comprising the hydrocarbon liquid and at least a portion of the presulfided catalyst; and c) adding the slurry of the hydrocarbon liquid and the presulfided catalyst to the hydroconversion reaction zone while maintaining the reaction zone at the reaction pressure.
- 17. The method according to claim 16, wherein the slurry is added to the hydroconversion reaction zone at a temperature in the range from 125° C. to 325° C.
- 18. A method for hydroprocessing a hydrocarbon feed stream that is upflowing through a hydroconversion reaction zone comprising the steps of:
a) introducing a hydrocarbon feed stream in the presence of hydrogen at a reaction pressure into a hydroconversion reaction zone which contains particulate hydroprocessing catalyst to commence upflowing of said hydrocarbon feed stream through said catalyst and to recover a reaction effluent therefrom; b) presulfiding a volume of hydroprocessing catalyst at a pressure in the range of 0.2 to 7.0 MPa and a temperature in the range of 90° C. to 370° C. within a treatment zone to produce at least partially sulfided catalyst; and c) adding at least a portion of the presulfided catalyst into the hydroconversion reaction zone while maintaining the reaction zone at the reaction pressure.
- 19. The method according to claim 18, wherein the hydroprocessing catalyst is presulfided at a pressure in the range of 0.2 to 3.5 MPa and at a temperature in the range of 125° C. to 325° C.
- 20. The method of claim 18 further comprising presulfiding the partially presulfided catalyst at a pressure in the range of 7.0 MPa to 24.2 MPa and a temperature in the range of 90° C. to 370° C.
- 21. The method according to claim 20, wherein the partially presulfided catalyst is presulfided at a temperature in the range of 125° C. to 325° C.
- 22. The process according to claim 15, wherein the hydroconversion reaction zone is maintained at a reaction pressure and at a reaction temperature sufficient to hydroprocess the hydrocarbon feed stream, including a reaction temperature in a temperature range 343° C.-482° C. and a reaction pressure in a pressure range from 7.0 MPa to 24.2 MPa (1000-3500 psig).
- 23. The process according to claim 15, wherein the reaction zone is maintained as a substantially packed bed of particulates hydroprocessing catalyst.
- 24. The method of claim 23, wherein the step of introducing a hydrocarbon feed stream into a hydroconversion reaction zone comprises flowing upwardly said hydrocarbon feed stream into said substantially packed bed of hydroprocessing catalyst at a rate of flow such that said substantially packed bed of hydroprocessing catalyst expands to less than 10% by length beyond a substantially full axial length of said substantially packed bed of hydroprocessing catalyst in a packed bed state.
- 25. A method for hydroprocessing a hydrocarbon feed stream comprising the steps of:
a) introducing a hydrocarbon feed stream into a hydroconversion reaction zone having a substantially packed bed of particulate hydroprocessing catalyst to commence upflowing of said hydrocarbon feed stream through said substantially packed bed of the catalyst at a rate of flow such that said substantially packed bed of hydroprocessing catalyst expands to less than 10% by length beyond a substantially full axial length of said substantially packed bed of hydroprocessing catalyst in a packed bed state, and to recover a reaction effluent therefrom; b) withdrawing a first volume of the hydroprocessing catalyst from the hydroconversion reaction zone to commence essentially plug-flowing downwardly said substantially packed bed of hydroprocessing catalyst within said hydroconversion reaction zone; c) adding a second volume of a particulate hydroprocessing catalyst to a treatment zone, which second volume includes fresh hydroprocessing catalyst; d) presulfiding the second volume of hydroprocessing catalyst within the treatment zone to prepare presulfided catalyst; and e) adding at least a portion of the presulfided catalyst into the hydroconversion reaction zone to replace the withdrawn first volume of catalyst.
- 26. The method according to claim 25, wherein the step of presulfiding a second volume of hydroprocessing catalyst within the treatment zone comprises:
a) adding a volume of hydroprocessing catalyst to the treatment zone, which volume includes fresh hydroprocessing catalyst; b) heating the volume of hydroprocessing catalyst until the catalyst has a temperature ranging from 90° C. to 370° C.; and c) adding a presulfiding agent to the treatment zone to prepare sulfided catalyst.
- 27. The method according to claim 26, wherein hydroprocessing catalyst is presulfided at a temperature of 125° C. to 325° C.
- 28. The method according to claim 26, wherein the step of adding a volume of hydroprocessing catalyst to the treatment zone comprises:
a) preparing a slurry comprising a hydrocarbon liquid and a volume of hydroprocessing catalyst; b) adding the slurry comprising the hydrocarbon liquid and the hydroprocessing catalyst to the treatment zone; and c) removing at least a portion of the hydrocarbon liquid from the treatment zone.
- 29. The method according to claim 26, wherein the step of adding a presulfiding agent to the treatment zone comprises:
a) pressurizing the treatment zone which contains the hydroprocessing catalyst with a presulfiding agent at a pressure in the range of 0.2 to 24.2 MPa and a temperature in the range of 90° C. to 370° C. to produce at least partially presulfided catalyst; and b) removing at least a portion of the presulfiding agent from the treatment zone.
- 28. The method according to claim 29, wherein the presulfiding agent comprises a sulfur containing material selected from the group consisting of H2S and sulfur-containing materials which decompose at temperatures below 370° C.
- 29. The method according to claim 28, wherein the presulfiding agent comprises H2S.
- 30. The method according to claim 29, wherein the presulfiding agent comprises a gaseous recycle stream containing H2 and H2S.
- 31. The method of claim 29, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 125° C. to 325° C.
- 32. The method of claim 31, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 150° C. to 285° C.
- 33. The method according to claim 26, wherein the step of adding a presulfiding agent to the treatment zone comprises:
a) adding a volume of hydroprocessing catalyst to the treatment zone, which volume includes fresh hydroprocessing catalyst; b) flowing a heated hydrocarbon liquid through the volume of hydroprocessing catalyst within the treatment zone until the catalyst has a temperature ranging from 90° C. to 145° C.; c) subsequently pressurizing the treatment zone at a pressure ranging from 0.2 MPa to 24.2 MPa (15-3500 psig); d) continuing to flow the heated hydrocarbon liquid through the catalyst in the treatment zone until the catalyst has a temperature ranging from 125° C. to 325° C.; e) flowing a presulfiding mixture through the catalyst in the treatment zone to prepare at least partially sulfided catalyst.
- 34. The method of claim 33, wherein the at least partially presulfided catalyst is produced at a temperature in the range of 150° C. to 285° C.
- 35. The method according to claim 25, wherein the at least partially presulfided catalyst into the hydroconversion reaction zone comprises:
a) adding a hydrocarbon liquid to the sulfided catalyst in the treatment zone; b) forming a slurry comprising the hydrocarbon liquid and at least a portion of the presulfided catalyst; and c) adding the slurry of the hydrocarbon liquid and the presulfided catalyst to the hydroconversion reaction zone while maintaining the reaction zone at the reaction pressure.
- 36. The method according to claim 35, wherein the slurry is added to the hydroconversion reaction zone at a temperature in the range from 125° C. to 325° C.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a Continuation-in-Part of copending application U.S. Ser. No. 09/465,122, filed on Dec. 16, 1999 and claims priority therefrom.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09465122 |
Dec 1999 |
US |
Child |
09839042 |
Apr 2001 |
US |