Claims
- 1. A method for making a molecular sieve catalyst composition, the method comprising the steps of: combining a molecular sieve, a binder, and a matrix material in a slurry, wherein the slurry has a pH above or below an isoelectric point (IEP) of the molecular sieve.
- 2. The method of claim 1 wherein the molecular sieve is synthesized from the combination from at least two of the group consisting of a silicon source, a phosphorous source and an aluminum source, optionally in the presence of a templating agent.
- 3. The method of claim 1 wherein the slurry has a pH in the range of from 2.3 to 6.5.
- 4. The method of claim 1 wherein the slurry is spray dried.
- 5. The method of claim 1 wherein pH is at least 0.3 above or below the IEP of the molecular sieve.
- 6. The method of claim 1 wherein the binder has an IEP greater than 9, and the matrix material has an IEP less than about 2.
- 7. The method of claim 1 wherein the molecular sieve catalyst composition has an ARI less than 2 weight percent per hour.
- 8. The method of claim 1 wherein the pH of the slurry is below the IEP of the molecular sieve or the pH of the slurry is below the IEP of the molecular sieve and the IEP of the binder.
- 9. The method of claim 1 wherein the IEP of the molecular sieve in the range of from about 3 to 7.
- 10. A method for formulating a molecular sieve catalyst composition, the method comprising the steps of: (a) introducing a molecular sieve to form a slurry; (b) introducing a binder to the slurry; (c) introducing a matrix material to the slurry; and (d) spray drying the slurry to produce the formulated molecular sieve catalyst composition, wherein the slurry has a pH above or below an IEP of, independently or in combination, the molecular sieve, the binder and the matrix material.
- 11. The method of claim 10 wherein the first pH of the slurry is in the range of from 2.3 to about 6.2.
- 12. The method of claim 10 wherein the matrix material is introduced after steps (a) and (b).
- 13. The method of claim 10 wherein two of the molecular sieve and the binder have a positive charge at the pH of the slurry.
- 14. The method of claim 12 wherein the matrix material has a negative charge at the pH of the slurry.
- 15. The method of claim 10 wherein each of the molecular sieve, the binder and the matrix material each have a charge density, and are introduced to each other such that higher charge density per unit mass of the molecular sieve, the binder and the matrix material is added to the lower charge density per unit mass of the molecular sieve, the binder and the matrix material.
- 16. The method of claim 12 wherein the molecular sieve catalyst composition has an ARI of less than 2 weight percent per hour.
- 17. The method of claim 10 wherein the molecular sieve is synthesized by the method comprising the steps of: (i) forming a reaction mixture of at least one templating agent and at least two of the group consisting of a silicon source, a phosphorous source and an aluminum source; and (ii) removing the molecular sieve from the reaction mixture.
- 18. The method of claim 10 wherein the pH of the slurry is below the IEP of the molecular sieve.
- 19. The method of claim 10 wherein the pH of the slurry is above or below the IEP of the molecular sieve and the binder.
- 20. A process for converting a feedstock into one or more olefin(s) in the presence of a molecular sieve catalyst composition prepared by combining a molecular sieve, a binder, and a matrix material in a slurry, wherein the slurry has a pH above or below an isoelectric point (IEP) of the molecular sieve.
- 21. The process of claim 20 wherein the feedstock comprises oxygenates.
- 22. The process of claim 20 wherein the molecular sieve catalyst composition has an ARI less than 2 weight percent per hour.
- 23. The process of claim 20 wherein the pH of the slurry is in the range of from 2.3 to about 6.2.
- 24. The process of claim 20 wherein the matrix material has a negative charge, the binder and the molecular sieve having a positive charge at the pH of the slurry, and the IEP of the molecular sieve is in the range of from about 3.5 to about 6.5.
- 25. A process for producing one or more olefin(s), the process comprising the steps of:
(a) introducing a feedstock to a reactor system in the presence of a molecular sieve catalyst composition formed from a slurry of a molecular sieve, a binder, and a matrix material, wherein the slurry is at a pH below or above an IEP of the molecular sieve; (b) withdrawing from the reactor system an effluent stream; and (c) passing the effluent gas through a recovery system recovering at least the one or more olefin(s).
- 26. The process of claim 25 wherein the process further comprises the step of: (d) introducing the molecular sieve catalyst composition to a regeneration system to form a regenerated molecular sieve catalyst composition, and introducing the regenerated molecular sieve catalyst composition to the reaction system.
- 27. The process of claim 25 wherein the feedstock comprises methanol, and the olefin(s) include ethylene and propylene, and the molecular sieve is a silicoaluminophosphate.
- 28. The process of claim 25 wherein the molecular sieve catalyst composition has an ARI less than 2 weight percent per hour.
- 29. The process of claim 25 wherein the binder is an alumina sol having a positive charge at the pH of the slurry.
- 30. An integrated process for making one or more olefin(s), the integrated process comprising the steps of:
(a) passing a hydrocarbon feedstock to a syngas production zone to producing a synthesis gas stream; (b) contacting the synthesis gas stream with a catalyst to form an oxygenated feedstock; and (c) converting the oxygenated feedstock into the one or more olefin(s) in the presence of a molecular sieve catalyst composition having an ARI less than 2, wherein a slurry comprising a molecular sieve, a binder and matrix material having a pH below or above an IEP of the molecular sieve is spray dried to form the molecular sieve catalyst composition.
- 31. The integrated process of claim 30 wherein the process further comprises the step of: (d) polymerizing the one or more olefin(s) in the presence of a polymerization catalyst into a polyolefin.
- 32. The integrated process of claim 30 wherein the oxygenated feedstock comprises methanol, the olefin(s) include ethylene and propylene, and the molecular sieve catalyst composition is a silicoaluminophosphate molecular sieve.
- 33. The integrated process of claim 30 wherein the molecular sieve catalyst composition has an ARI less than 1 weight percent per hour.
- 34. The integrated process of claim 30 wherein the molecular sieve is synthesized from the combination from at least two of the group consisting of a silicon source, a phosphorous source and an aluminum source, optionally in the presence of a templating agent.
- 35. The integrated process of claim 30 wherein the pH of the slurry is in the range of from about 2.3 to 6.2.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims priority from the provisional patent application U.S. Serial No. 60/365,981, filed Mar. 20, 2002, which is herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60365981 |
Mar 2002 |
US |