Claims
- 1. The process for the preparation of a cracking catalyst comprising: (1) the treatment of at least one silicoaluminophosphate molecular sieve of U.S. Pat. No. 4,440,871 characterized in its calcined form by an adsorption of isobutane of at least 2 percent by weight at a pressure of 500 torr and a temperature of 20.degree. C. with an effective amount of at least one exchange cation selected from the group consisting of H+, ammonium, Group IIA, Groups IIIB to VIIB, cerium, lanthanum, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, lutetium and mixtures thereof; and (2) admixing the product of step (1) with at least one inorganic oxide matrix component.
- 2. The process of claim 1 wherein said SAPO is a microporous crystalline silicoaluminophosphates the pores of which are uniform and have nominal diameters of greater than about 3 Angstroms and whose essential empirical chemical composition in the as-synthesized and anhydrous form is:
- mR:(Si.sub.x Al.sub.y P.sub.z)O.sub.2
- wherein "R" represents at least one organic templating agent present in the intracrystalline pore system; "m" has a value from 0.02 to 0.3; "m" represents the moles of "R" present per mole of (Si.sub.x Al.sub.y P.sub.z)O.sub.2 ; "x", "y" and "z" represent the mole fractions of silicon, aluminum and phosphorus respectively, present as tetrahedral oxides, said mold fractions being such that they are within the pentagonal composition area defined by points A,B,C,D, and E of the ternary diagram which is FIG. 1 of the drawing, of U.S. Pat. No. 4,440,871.
- 3. The process of claim 2 wherein said SAPO is a silicoaluminophosphate molecular sieve having a three-dimensional microporous framework structure of PO.sup.+2, AlO.sub.2.sup.- and SiO.sub.2 tetrahedral units, and whose essential empirical chemical composition on an anhydrous basis is:
- mR:(Si.sub.x Al.sub.y P.sub.z)O.sub.2
- wherein R represents at least one organic templating agent present in the intracrystalline pore system; "m" represents the mole of "R" present per mole of (Si.sub.x Al.sub.y P.sub.z)O.sub.2 and has a value of from 0.3; "x", "y" and "z" represent respectively, the mole fractions of silicon, aluminum and phosphorus present in the oxide moiety, said mole fractions being within the compositional area bounded by points A,B,C,D, and E on the ternary diagram which is FIG. 1, said silicoaluminophosphate having a characteristic X-ray powder diffraction pattern which contains at least the d-spacings set forth below in any one of Tables I, III, V, VII, IX, XIII, XVII XXI, XXIII or XXV of U.S. Pat. No. 4,440,871.
- 4. The process of claim 1 wherein the SAPO molecular sieve is ammonium exchanged one or more times.
- 5. The process of claim 1 wherein the SAPO molecular sieve contains between about 0.05 weight percent and about 20 weight percent of said cation.
- 6. The process of claim 2 wherein the SAPO molecular sieve contains between about 0.5 weight percent and about 10 weight percent ammonium cation.
- 7. The catalyst prepared by the process of claim 1.
- 8. The catalyst prepared by the process of claim 2.
- 9. The catalyst prepared by the process of claim 3.
- 10. A cracking catalyst comprising: (1) a silicoaluminophosphate molecular sieve of U.S. Pat. No. 4,440,871 characterized in its calcined form by an adsorption of isobutane of at least 2 percent by weight at a pressure of 500 torr and a temperature of 20.degree. C. and having an effective amount of the cations associated with said silicoaluminophosphate molecular sieve selected from the group consisting of H+, ammonium, Group IIA, groups IIIB to VIIB, cerium, lanthanum, praseodymium, neodymium, promethium, samarium, europium, gadalinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium, luterium and mixtures thereof; and (2) at least one inorganic oxide matrix component.
- 11. The catalyst of claim 10 wherein said silicoaluminophosphate is further characterized by an adsorption of triethylamine of greater than 5 percent by weight at a pressure of 2.6 torr and a temperature of 22.degree. C.
- 12. The catalyst of claim 11 wherein said SAPO molecular sieve is a silicoaluminophosphate having at least a portion of its cations as H.sup.+ or NH.sub.4.sup.+.
- 13. The catalyst of claim 12 wherein said cation is NH.sub.4.sup.+.
- 14. The catalyst of claim 10 wherein the silicoaluminophosphate molecular sieve is selected from the group consisting of SAPO-5, SAPO-11, SAPO-31, SAPO-37, SAPO-40, SAPO-41 and mixtures thereof.
- 15. The catalyst of claim 14 wherein the silicoaluminophosphate is SAPO-5.
- 16. The catalyst of claim 14 wherein the silicoaluminophosphate is SAPO-11.
- 17. The catalyst of claim 14 wherein the silicoaluminophosphate is SAPO-31.
- 18. The catalyst of claim 14 wherein the silicoaluminophosphate is SAPO-40.
- 19. The catalyst of claim 14 wherein the silicoaluminophosphate is SAPO-41.
- 20. The catalyst of claim 10 wherein said silicoaluminophosphate is a microporous crystalline silicoaluminophosphate the pores of which are uniform and have nominal diameters of greater than about 3 Angstroms and whose essential empirical chemical composition in the as-synthesized and anhydrous form is:
- mR:(Si.sub.x Al.sub.y P.sub.z)O.sub.2
- wherein "R" represents at least one organic templating agent present in the intracrystalline pore system; "m" has a value from 0.02 to 0.3; "m" represents the moles of "R" present per mole of (Si.sub.x Al.sub.y P.sub.z)O.sub.2 ; "x", "y" and "z" represent the mole fractions of silicon, aluminum and phosphorus respectively, present as tetrahedral oxides, said mole fractions being such that they are within the pentagonal composition area defined by points A,B,C,D, and E of the ternary diagram which is FIG. 1 of the drawing, of U.S. Pat. No. 4,440,871.
- 21. The catalyst of claim 10 wherein said SAPO is a silicoaluminophosphate material having a three-dimension microporous framework structure of PO.sub.2.sup.+, AlO.sub.2.sup.- and SiO.sub.2 tetrahedral units, and whose essential empirical chemical composition on an anhydrous basis is:
- mR:(Si.sub.x Al.sub.y P.sub.z)O.sub.2
- wherein R represents at least one organic templating agent present in the intracrystalline pore system; "m" represents the mole of "R" present per mole of (Si.sub.x Al.sub.y P.sub.z)O.sub.2 and has a value of from zero to about 0.3; "x", "y" and "z" represent respectively, the mole fractions of silicon, aluminum and phosphorus present in the oxide moiety, said mole fractions being within the compositional area bounded by points A,B,C,D, and E on the ternary diagram which is FIG. 1, said silicoaluminophosphate having a characteristic X-ray powder diffraction pattern which contains at least the d-spacings set forth below in any one of Tables I, III, V, VII, IX, XIII, XVII, XXI, XXIII or XXV of U.S. Pat. No. 4,440,871.
- 22. The catalyst of claim 10 wherein said catalyst comprises between 5 and about 95 percent by weight of at least one inorganic oxide matrix component selected from the group consisting of clays, silicas, aluminas, silica-aluminas, silica-zirconias, silica-magnesias, alumina-borias and alumina-titanias.
- 23. The catalyst of claim 13 wherein the silicoaluminophosphate is SAPO-37.
Parent Case Info
This application is a continuation of prior U.S. application Ser. No. 675,279, filing date 11/27/84, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3140249 |
Plank et al. |
Jul 1964 |
|
4440871 |
Lok |
Apr 1984 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
675279 |
Nov 1984 |
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