Claims
- 1. A process for preparing zeolite-bound high silica zeolite which contains less than 10 percent by weight of non-zeolitic binder and comprises high silica zeolite crystals and zeolite binder crystals, said process comprising:(a) providing a mixture of high silica zeolite in the hydrogen form, water, and silica to provide an extrudable mass; (b) extruding said extrudable mass to form a silica-bound high silica zeolite extrudate; and (c) converting the silica of the binder of said extrudate to a zeolite binder.
- 2. The process recited in claim 1, wherein said silica binder is converted to said zeolite binder by converting at an elevated temperature said silica-bound high silica zeolite extrudate in an aqueous ionic solution which contains hydroxy ions and optionally an organic structure directing agent such that the initial molar ratio of (OH−):(SiO2) is in the range of from about 0.05 to about 1.2.
- 3. The process recited in claim 2, wherein said high silica zeolite has a large pore size or an intermediate pore size.
- 4. The process recited in claim 3, wherein said high silica zeolite has a structure type selected from the group consisting of *BEA, MFI, MEL, MEI, MTW, MTT, TON, and mixtures thereof.
- 5. The process recited in claim 4, wherein the zeolite binder has a structure type that is different from the structure type of said high silica zeolite.
- 6. The process recited in claim 4, wherein the zeolite binder has the same structure type as said high silica zeolite.
- 7. The process recited in claim 4, wherein the binder zeolite has lower acidity than the zeolite in the extrudate.
- 8. The process recited in claim 4, wherein the binder zeolite has higher acidity than said high silica zeolite.
- 9. The process recited in claim 4, wherein said binder zeolite has a silica to alumina mole ratio greater than about 200:1 or a silica to gallia mole ratio greater than about 100:1.
- 10. The process recited in claim 9, wherein said high silica zeolite has a silica to alumina mole ratio of from greater than 80:1 to about 700:1 or a silica to gallia mole ratio of from greater than 80:1 to about 500:1.
- 11. The process recited in claim 10, wherein said high silica zeolite and said binder zeolite have a MFI or MEL structure.
- 12. The process recited in claim 4, wherein said zeolite binder is present in said zeolite-bound high silica zeolite in an amount in the range of from about 20 to about 50 weight percent based on the weight of said high silica zeolite.
- 13. The process recited in claim 4, wherein said zeolite-bound high silica zeolite contains less than 5 percent by weight of non-zeolitic binder based on the weight of said high silica zeolite and zeolite binder.
- 14. The process recited in claim 4, wherein said high silica zeolite crystals have an average particle size of from about 1 to about 6 microns.
- 15. The process recited in claim 14, wherein said zeolite binder crystals have an average particle size of from about 0.1 to about 1 micron.
- 16. The process recited in claim 4, wherein said silica-bound high silica zeolite extrudate contains from about 20 to about 50% by weight silica.
- 17. The process recited in claim 4, wherein said elevated temperature is in the range of from about 95° C. to 200° C.
- 18. The process recited in claim 17, wherein said (OH−):(SiO2) molar ratio is in the range of from about 0.05 to about 0.6.
- 19. The process recited in claim 3, wherein said zeolite binder crystals are intergrown and form at least a partial coating on said high silica zeolite crystals.
- 20. The process recited in claim 3, wherein said zeolite binder crystals have an average particle size that is less than the crystals of said high silica zeolite crystals.
- 21. The process recited in claim 3, wherein said high silica zeolite crystals have an average particle size greater than about 0.1 micron.
- 22. The process recited in claim 21, wherein said high silica zeolite is an aluminosilicate zeolite or a gallosilicate zeolite.
- 23. The process recited in claim 22, wherein said high silica zeolite and said zeolite binder have an intermediate pore size zeolite.
- 24. The process recited in claim 3, wherein said extrudable mass is extruded using a ram extruder.
- 25. The process recited in claim 3, wherein said extrudable mass is extruded using a screw extruder.
- 26. The process recited in claim 3, wherein the composition of said high silica zeolite has the following molar relationship:X2O3::(n)YO2, wherein X is titanium, aluminum, iron, boron, gallium or mixtures thereof and Y is as silicon, tin, germanium or mixtures thereof and n has a value greater than 80.
- 27. The process recited in claim 26, wherein n has a value greater than 100.
- 28. The process recited in claim 3, where at least 90 percent of the exchangeable alkali ions of said high silica zeolite have been replaced by hydrogen ions.
- 29. The process recited in claim 28, wherein the hydrogen form of said high silica zeolite is prepared by ion exchanging ammonium ions for alkali ions present in said high silica zeolite and decomposing said exchanged ammonium ions.
Parent Case Info
This application is a continuation of U.S. application Ser. No. 09/396,842, filed Sep. 15, 1999, now abandoned, which claims the benefit of U.S. Provisional Application Ser. No. 60/101,397, filed Sep. 22, 1998.
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Provisional Applications (1)
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Continuations (1)
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Number |
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09/396842 |
Sep 1999 |
US |
Child |
09/992783 |
|
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