Claims
- 1. A process for producing a lubricating oil of improved pour point and viscosity index which comprises
- (i) catalytically dewaxing a lube feed stock having an initial boiling point of at least 650.degree. F. containing waxy, paraffinic components in an initial catalytic dewaxing step with a dewaxing catalyst comprising zeolite beta having a silica:alumina ratio of at least 10:1 and a hydrogenation-dehydrogenation component, in the presence of hydrogen under dewaxing conditions of elevated temperature from 480.degree. to 850.degree. F. and pressure of up to 1000 psig and at a contact time between the feed and the catalyst which effects a partial removal of the waxy components by isomerization of the waxy paraffinic components to less waxy iso-paraffinic components, to increase the content of iso-paraffinic components in the stock relative to the content of iso-paraffinic components in the feed; and
- (ii) subjected the effluent from the initial catalytic dewaxing step to a selective dewaxing operation in which straight chain, waxy paraffinic components are removed in preference to iso-paraffinic components, to lower the pour point of the stock to produce a dewaxed lubricant product having a targeted pour point and viscosity index.
- 2. A process according to claim 1 in which the pour point of the feed stock is reduced during the initial catalytic dewaxing step to a value which is no lower than 10.degree. F. above the target pour point of the product.
- 3. A process according to claim 2 in which the pour point of the effluent from the initial catalytic dewaxing step is reduced to a value no lower than 20.degree. F. above the pour point of the product.
- 4. A process according to claim 2 in which the pour point of the feed stock is reduced by at least 10.degree. F. during the initial catalytic dewaxing step.
- 5. A process according to claim 4 in which the pour point of the feed stock is reduced by at least 20.degree. F. during the initial catalytic dewaxing step.
- 6. A process according to claim 1 in which the dewaxing catalyst of the initial catalytic dewaxing step comprises zeolite beta having a silica:alumina ratio of at least 30:1 and a hydrogenation-dehydrogenation component comprising at least one metal of Groups IVA, VA, VIA, VIIA or VIIIA of the Periodic Table of the Elements.
- 7. A process according to claim 6 in which the dewaxing catalyst of the initial catalytic dewaxing step comprises zeolite beta having a silica:alimina ratio of at least 30:1 and a hydrogenation-dehydrogenation component comprising at least one of the metals nickel, cobalt, molybdenum, tungsten or vanadium.
- 8. A process according to claim 6 in which the dewaxing catalyst of the initial catalytic dewaxing step comprises zeolite beta having a silica:alumina ratio of at least 30:1 and a hydrogenation-dehydrogenation component comprising at least one of the metals platinum or palladium.
- 9. A process according to claim 1 in which the selective dewaxing operation comprises solvent dewaxing.
- 10. A process according to claim 1 in which the selective dewaxing operation comprises a shape-selective catalytic dewaxing operation in which the effluent of the initial catalytic dewaxing step is dewaxed using a shape-selective catalyst which has a dewaxing selectivity at least as that of ZSM-5.
- 11. A process according to claim 10 in which the dewaxing catalyst in the selective dewaxing operation comprises an intermediate pore zeolite having a Constraint Index of at least 8, an n-hexane sorption of less than 10 weight percent at 50.degree. C. and a cyclohexane sorption of less than 5 weight percent at 50.degree. C.
- 12. A process according to claim 11 in which the dewaxing catalyst in the selective dewaxing operation has an n-hexane sorption of less than 5 weight at 50.degree. C.
- 13. A process according to claim 10 in which the dewaxing catalyst in the selective dewaxing operation comprises ZSM-22 or ZSM-23.
- 14. A process according to claim 10 in which the dewaxing catalyst in the selective dewaxing operation comprises ZSM-35.
- 15. A dewaxing process for producing a hydrocarbon lubricant of improved pour point and viscosity index from a lube feed stock having an initial boiling point of at least 650.degree. F., an initial high pour point and including waxy components comprising straight an slightly branched chain paraffins together with branched chain isoparaffins, which method comprises
- (i) partially dewaxing the base stock in an initial low pressure catalytic hydroisomerization dewaxing step which comprises contacting the base stock under dewaxing conditions of elevated temperature from 480.degree. to 850.degree. F. and pressure of not more than 1000 psig in the presence of hydrogen with a dewaxing catalyst comprising zeolite beta having a silica:alumina ratio of at least 30:1 and hydrogenation-dehydrogenation component, at a contact time between the feed and the catalyst which effects a partial removal of the waxy components by isomerization of the waxy paraffinic components to less waxy iso-paraffinic components, to increase the iso-paraffin content of the stock relative to the iso-paraffinic content of the feed and effect a reduction in the pour point of the base stock, producing a partially dewaxed effluent; and
- (ii) subjecting the partially dewaxing effluent to a selective dewaxing operation to effect a further removal of the waxy components while minimizing removal of the branched chain isoparaffinic components, to produce a dewaxed lubricant product having a targeted pour point and viscosity index.
- 16. A process according to claim 15 in which the severity of the initial catalytic dewaxing operation is selected to reduce the pour point of the feed stock to a value not lower than 10.degree. F. above the target pour point for the product.
- 17. A process according to claim 15 in which the severity of the initial dewaxing operation is selected to reduce the pour point of the feed stock to a value not lower than 20.degree. F. above the target pour point for the product.
- 18. A process according to claim 15 in which the pour point of the feed stock is reduced by at least 10.degree. F. during the initial catalytic dewaxing operation.
- 19. A process according to claim 18 in which the pour point of the feed stock is reduced by at least 20.degree. F. during the initial catalyst dewaxing operation.
- 20. A process according to claim 15 in which the dewaxing catalyst in the initial catalytic dewaxing operation comprises zeolite beta having a silica:alumina ratio of at least 30:1 and a hydrogenation-dehydrogenation component comprising at least one metal of group IVA, VA, VIA, VIIA or VIIIA of the Periodic Table of the Elements.
- 21. A process according to claim 15 in which the selective dewaxing operation comprises a solvent dewaxing operation.
- 22. A process according to claim 15 in which the selective dewaxing operation comprises a catalytic dewaxing operation in which the effluent of the initial catalytic dewaxing step is dewaxed using a shape selective dewaxing catalyst comprising an intermediate pore zeolite having a dewaxing selectivity greater than that of ZSM-5.
- 23. A process according to claim 22 in which the selective dewaxing operation is carried out over a dewaxing catalyst comprising ZSM-22 or ZSM-23.
- 24. A process according to claim 22 in which the selective dewaxing operation is carried out over a dewaxing catalyst comprising ZSM-35.
- 25. A process according to claim 15 in which the feed stock comprises a highly paraffinic base stock having a paraffin content of at least 60 weight percent and a pour point (ASTM D-97) of at least 40.degree. C.
- 26. A process for the production of a liquid lubricant product of low viscosity, high viscosity index an low pour point from a highly paraffinic hydrocarbon feed having a paraffin content of at least 60 weight percent, which comprises:
- (i) partially dewaxing the base stock in an initial catalytic dewaxing step which comprises contacting the base stock under dewaxing conditions of elevated temperature from 480.degree. to 850.degree. F. and pressure of not more than 1000 psig in the presence of hydrogen with a dewaxing catalyst comprising a zeolite beta and a hydrogenation-dehydrogenation component and at a contact time between the feed and the catalyst which effects a partial removal of the waxy components by isomerization to iso-paraffins so as to increase the content of iso-paraffins relative to the feed while decreasing the content of n-paraffins relative to the feed thereby effecting a reduction in the pour point of the base stock, producing a partially dewaxed effluent having an incresed content of iso-paraffins, and
- (ii) subjecting the partially dewaxed effluent to a selective dewaxing operation having a dewaxing selectivity at least as great as that of a catalytic dewaxing operation using a ZSM-5 dewaxing catalyst to effect a further removal of the waxy components while minimizing removal of the branched chain isoparaffinic components, to produce a dewaxed lubricant product having improved pour point and viscosity index.
- 27. A process according to claim 26 in which the selective dewaxing operation includes a solvent dewaxing step which produces a dewaxed product and a waxy by-product.
- 28. A process according to claim 27 in which the dewaxed product from the solvent dewaxing step is subjected to further dewaxing in a catalytic dewaxing operation using a dewaxing catalyst having a dewaxing selectivity greater than that of ZSM-5, to produce a product of pour and viscosity index.
- 29. A process according to claim 27 in which the waxy by-product is recycled to the initial catalytic dewaxing step.
- 30. A process according to claim 28 in which the waxy by product is recycled to the initial catalytic dewaxing step.
FIELD OF THE INVENTION
The present invention relates to a process for the production of lubricants and more particularly, to a process for the production of hydrocarbon lubricants of high viscosity index.
This application is a continuation-in-part of application Ser. No. 793,937, filed 1 November 1985, now abandoned, by W. E. Garwood, Q. N. Le and S. S. Wong entitled Lubricant Product Process, the entire disclosure of which is incorporated by this reference. This application is also a continuation-in-part of application Ser. No. 821,125, filed 22 January 1986 which, now abandoned, in turn, was a continuation of application Ser. No. 685,089, filed 21 December 1984, now abandoned, both of these applications being filed by N. Y. Chen and T. J. Huang and entitled Cascade Catalytic Lube Processes. The entire disclosures of Ser. Nos. 821,125 and 685,089 are incorporated in this application by this reference to them.
This application is also related to application Ser. No. 044,187, filed 30 April 1987, now abandoned, to which reference is also made.
US Referenced Citations (27)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0188898 |
Jul 1986 |
EPX |
1390359 |
Apr 1975 |
GBX |
1429494 |
Mar 1976 |
GBX |
Non-Patent Literature Citations (2)
Entry |
Developments in Lubrication, PD 19(2), 221-228, Bull et al. |
"Characterization of the Acidity of Zeolite Beta by FTi.r. Spectroscopy and t.p.d. of NH.sub.3 ", ZEOLITES, 1989, vol. 9, May, Hegde et al., p. 231. |
Continuation in Parts (2)
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Number |
Date |
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Parent |
793937 |
Nov 1985 |
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Parent |
685089 |
Dec 1984 |
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