Claims
- 1. A method for regenerating an alkylation catalyst component which component comprises transition alumina which has been contacted with a strong Lewis acid to produce an alkylation catalyst component containing between 0.5% and 30% by weight of Lewis acid and has been partially deactivated by use in an alkylation reaction medium, comprising the steps of:
- a. separating the alkylation catalyst component from the alkylation reaction medium,
- b. stripping light hydrocarbons and excess Lewis acid from the alkylation catalyst component using an inert gas,
- c. heating the alkylation catalyst component to a temperature of 100.degree. to 250.degree. C.,
- d. contacting the alkylation catalyst component with an oxygen-containing gas and maintaining a gas outlet temperature between 350.degree. and 800.degree. C. to regenerate the alkylation catalyst component comprising transition alumina.
- 2. The process of claim 1 where the transition alumina is selected from gamma-alumina, eta-alumina, theta-alumina, chi-alumina, kappa-alumina, lambda-alumina, rho-alumina, and mixtures.
- 3. The process of claim 2 where the transition alumina is selected from gamma-alumina, eta-alumina, and mixtures.
- 4. The process of claim 1 where the strong Lewis acid is selected from BF.sub.3, BCl.sub.3, BBr.sub.3, Bl.sub.3, SbF.sub.5, AlCl.sub.3, AlBr.sub.3, TiBr.sub.4, TiCl.sub.4, TiCl.sub.3, ZrCl.sub.4, PF.sub.5, FeCl.sub.3, and FeBr.sub.3.
- 5. The process of claim 1 where the strong Lewis acid is selected from SbF.sub.5, AlCl.sub.3, and BF.sub.3.
- 6. The process of claim 5 where the strong Lewis acid is BF.sub.3.
- 7. The process of claim 1 where the temperature is maintained between 450.degree. and 700.degree. C.
- 8. The process of claim 7 where the temperature is maintained between 500.degree. and 650.degree. C.
- 9. An alkylation process comprising the steps of:
- a. contacting a mixture comprising isoparaffins and n-olefins with an acidic alkylation catalyst system comprising transition alumina which has been previously contacted with a Lewis acid under alkylation conditions to produce an alkylate stream,
- b. separating the alkylate stream from the acidic transition alumina based alkylation catalyst,
- c. stripping light hydrocarbons and excess Lewis acid from the alkylation catalyst component using an inert gas,
- d. heating the alkylation catalyst component to a temperature of 100.degree. to 250.degree. C.,
- e. contacting the acidic transition alumina based alkylation catalyst with an oxygen-containing gas and maintaining a gas outlet temperature between 350.degree. and 800.degree. C. to regenerate that catalyst, and
- f. recycling the regenerated alkylation catalyst to the alkylation step.
- 10. The process of claim 9 where the transition alumina is selected from gamma-alumina, eta-alumina, theta-alumina, chi-alumina, kappa-alumina, lambda-alumina, rho-alumina, and mixtures.
- 11. The process of claim 10 where the transition alumina is selected from gamma-alumina, eta-alumina, and mixtures.
- 12. The process system of claim 9 where the strong Lewis acid is selected from BF.sub.3, BCl.sub.3, BBr.sub.3, Bl.sub.3, SbF.sub.5, AlCl.sub.3, AlBr.sub.3, TiBr.sub.4, TiCl.sub.4, TiCl.sub.3, ZrCl.sub.4, PF.sub.5, FeCl.sub.3, and FeBr.sub.3.
- 13. The process system of claim 9 where the strong Lewis acid is selected from SbF.sub.5, AlCl.sub.3, and BF.sub.3.
- 14. The process system of claim 13 where the strong Lewis acid is BF.sub.3.
- 15. The process of claim 9 where the temperature is maintained between 450.degree. and 650.degree. C.
- 16. The process of claim 15 where the temperature is maintained between 500.degree. and 650.degree. C.
- 17. The process of claim 9 where alkylation conditions include a temperature in the range of -30.degree. C. to 50.degree. C.
- 18. The process of claim 9 where the mixture comprises 2-butene and isoparaffin.
- 19. The process of claim 9 including the step of mixing the alkylate stream with other hydrocarbons to produce a gasoline blending component or gasoline.
- 20. The process of claim 1 additionally comprising the step of recycling light hydrocarbons and Lewis acid to the alkylation catalyst component.
- 21. The process of claim 9 additionally comprising the step of recycling light hydrocarbons and Lewis acid to the alkylation catalyst component.
RELATED APPLICATIONS
This is a continuation-in-part of U.S. patent application Nos. 07/588,448 to Cooper et al. entitled "ISOPARAFFIN ALKYLATION USING A LEWIS ACID PROMOTED TRANSITION ALUMINA CATALYST filed Sep. 26, 1990 now abandoned; 07/697,318 to Cooper et al. entitled "ISOPARAFFIN ALKYLATION USING A LEWIS ACID PROMOTED TRANSITION ALUMINA CATALYST filed May 7, 1991; now U.S. Pat. No. 5,157,197; and 07/697,320 to Cooper et al. entitled "LEWIS ACID PROMOTED TRANSITION ALUMINA CATALYSTS SUITABLE FOR ISOPARAFFIN ALKYLATION filed May 7, 1991, and now abandoned; the entirety of which are incorporated by reference.
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Related Publications (2)
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Date |
Country |
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697318 |
May 1991 |
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697320 |
May 1991 |
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Continuation in Parts (1)
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Number |
Date |
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| Parent |
588448 |
Sep 1990 |
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