Claims
- 1. A crystalline chromosilicate, which chromosilicate comprises a molecular sieve material providing an X-ray diffraction pattern comprising the following X-ray diffraction lines and assigned strengths:
- ______________________________________Interplanar Spacing Assignedd, A Strength______________________________________11.04 .+-. 0.2 S10.04 .+-. 0.2 S3.80 .+-. 0.07 VS3.74 .+-. 0.05 M3.70 .+-. 0.05 S3.64 .+-. 0.05 MS______________________________________
- and having the following composition in terms of mole ratios of oxides:
- 0.9.+-.0.2[WR.sub.2 O+(1-W)M.sub.2/n O]:Cr.sub.2 O.sub.3 :YSiO.sub.2 :ZH.sub.2 O,
- wherein R is an alkylammonium cation, M is at least one cation having a valence of n, Y is a value within the range of about 4 to about 500, Z is a value within the range of about 0 to about 160, and W is a value that is greater than or equal to 0 and less than or equal to 1.
- 2. The chromosilicate of claim 1, said chromosilicate having been prepared by the method which comprises: (1) preparing a mixture containing an oxide of silicon, a compound of chromium, a hydroxide of an alkali metal or an alkaline earth metal, an alkylammonium cation or a precursor of an alkylammonium cation, and water; (2) maintaining said mixture at suitable reaction conditions to effect formation of said chromosilicate, said reaction conditions comprising a temperature within the range of about 25.degree. C. to about 300.degree. C., a pressure of at least the vapor pressure of water at said temperature, and a reaction time that is sufficient to effect crystallization to crystals of said chromosilicate; and (3) drying said crystals.
- 3. The chromosilicate of claim 1, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 4. The chromosilicate of claim 2, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 5. The chromosilicate of claim 2, wherein said mixture that is prepared in step (1) of said method of preparation has ratios of the initial reactant concentrations in the following ranges:
- ______________________________________SiO.sub.2 /Cr.sub.2 O.sub.3 1-500R.sub. N.sup.+ /(R.sub.4 'N.sup.+ + Na.sup.+) 0.1-1OH.sup.- /SiO.sub.2 0.1-10H.sub.2 O/OH.sup.- 10-500______________________________________
- wherein R' is an alkyl group and Na.sup.+ represents sodium, any other alkali metal, or an alkaline earth metal.
- 6. The chromosilicate of claim 5, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 7. A crystalline chromosilicate, which chromosilicate comprises a molecular sieve material providing an X-ray diffraction pattern comprising the following X-ray diffraction lines and assigned strengths:
- ______________________________________Interplanar Spacing Assignedd, A Strength______________________________________11.15 .+-. 0.2 W9.96 .+-. 0.2 VS5.99 .+-. 0.1 VW5.71 .+-. 0.1 VW4.97 .+-. 0.1 W3.85 .+-. 0.07 M3.82 .+-. 0.07 MS3.75 .+-. 0.05 M3.32 .+-. 0.05 VW1.99 .+-. 0.02 W______________________________________
- and having the following composition in terms of mole ratios of oxides:
- 0.9.+-.0.2M.sub.2/n O:Cr.sub.2 O.sub.3 :YSiO.sub.2 :ZH.sub.2 O,
- wherein M is an least one cation having a valence of n, Y is within the range of about 4 to about 5000, and Z is within the range of 0 to about 160.
- 8. The chromosilicate of claim 7, wherein Y is a value within the range of about 4 to about 80.
- 9. The chromosilicate of claim 7, wherein Z is a value within the range of 0 to about 40.
- 10. The chromosilicate of claim 7, wherein M is selected from the group consisting of alkylammonium cations, ammonium cation, hydrogen cation, metal cations, and mixtures thereof.
- 11. The chromosilicate of claim 7, said chromosilicate having been prepared by the method which comprises: (1) preparing a mixture containing an oxide of silicon, a compound of chromium, a hydroxide of an alkali metal or an alkaline earth metal, an alkylammonium cation or a precursor of an alkylammonium cation, and water; (2) maintaining said mixture at suitable reaction conditions to effect formation of said chromosilicate, said reaction conditions comprising a temperature within the range of about 25.degree. C. to about 300.degree. C., a pressure of at least the vapor pressure of water at said temperature, and a reaction time that is sufficient to effect crystallization to crystals of said chromosilicate; (3) drying said crystals; and (4) activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 12. The chromosilicate of claim 8, wherein Z is a value within the range of 0 to about 40.
- 13. The chromosilicate of claim 10, wherein M comprises nickel.
- 14. The chromosilicate of claim 11, wherein said mixture that is prepared in step (1) of said method of preparation has ratios of the initial reactant concentrations in the following ranges:
- ______________________________________SiO.sub.2 /Cr.sub.2 O.sub.3 1-500R.sub. N.sup.+ /(R.sub.4 'N.sup.+ + Na.sup.+) 0.1-1OH.sup.- /SiO.sub.2 0.1-10H.sub.2 O/OH.sup.- 10-500______________________________________
- wherein R' is an alkyl group and Na.sup.+ represents sodium, any other alkali metal, or an alkaline earth metal.
- 15. The chromosilicate of claim 12, wherein M is selected from the group consisting of alkylammonium cations, ammonium cation, hydrogen cation, metal cations, and mixtures thereof.
- 16. The chromosilicate of claim 12, said chromosilicate having been prepared by the method which comprises: (1) preparing a mixture containing an oxide of silicon, a compound of chromium, a hydroxide of an alkali metal or an alkaline earth metal, an alkylammonium cation or a precursor of an alkylammonium cation, and water; (2) maintaining said mixture at suitable reaction conditions to effect formation of said chromosilicate, said reaction conditions comprising a temperature within the range of about 25.degree. C. to about 300.degree. C., a pressure of at least the vapor pressure of water of said temperature, and a reaction time that is sufficient to effect crystallization to crystals of said chromosilicate; (3) drying said crystals; and (4) activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 17. The chromosilicate of claim 14, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 18. The chromosilicate of claim 15, wherein M comprises nickel.
- 19. The chromosilicate of claim 16, wherein said mixture that is prepared in step (1) of said method of preparation has ratios of the initial reactant concentration in the following ranges:
- ______________________________________SiO.sub.2 /Cr.sub.2 O.sub.3 1-500R.sub. N.sup.+ /(R.sub.4 'N.sup.+ + Na.sup.+) 0.1-1OH.sup.- /SiO.sub.2 0.1-10H.sub.2 O/OH.sup.- 10-500______________________________________
- wherein R' is an alkyl group and Na.sup.+ represents sodium, any other alkali metal, or an alkaline earth metal.
- 20. The chromosilicate of claim 19, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 21. A method for preparing a crystalline chromosilicate, which method comprises: (1) preparing a mixture containing an oxide of silicon, a compound of chromium, a hydroxide of an alkali metal or an alkaline earth metal, an alkylammonium cation or a precursor of an alkylammonium cation, and water; (2) maintaining said mixture at suitable reaction conditions to effect formation of the chromosilicate, said reaction conditions comprising a reaction temperature within the range of about 25.degree. C. to about 300.degree. C., a pressure of at least the vapor pressure of water at the reaction temperature, and a reaction time that is sufficient to effect crystallization to crystals of said chromosilicate; and (3) drying said crystals.
- 22. The method of claim 21, wherein said mixture that has been prepared in step (1) of said method has ratios of the initial reactant concentrations in the following ranges:
- ______________________________________SiO.sub.2 /Cr.sub.2 O.sub.3 1-500R.sub. N.sup.+ /(R.sub.4 'N.sup.+ + Na.sup.+) 0.1-1OH.sup.- /SiO.sub.2 0.1-10H.sub.2 O/OH.sup.- 10-500______________________________________
- wherein R' is an alkyl group and Na.sup.+ represents sodium, any other alkali metal, or an alkaline earth metal.
- 23. The method of claim 21, which method comprises further activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 24. The method of claim 21, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 25. The method of claim 22, which method comprises further activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 26. The method of claim 22, wherein said compound of chromium is Cr.sub.2 (SO.sub.4).sub.3.xH.sub.2 O or Cr(C.sub.2 H.sub.3 O.sub.2).sub.3.H.sub.2 O.
- 27. The method of claim 23, wherein said chromosilicate is cation exchanged with a catalytically active metal to provide a chromosilicate containing cations of said metal; drying said chromosilicate containing cations of said metal; and activating the dried chromosilicate containing cations of said metal by heat treating said chromosilicate containing cations of said metal in the presence of a hydrogen-containing atmosphere at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.).
- 28. The method of claim 24, which method comprises further activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 29. The method of claim 25, wherein said chromosilicate is cation exchanged with a catalytically active metal to provide a chromosilicate containing cations of said metal; drying said chromosilicate containing cations of said metal; and activating the dried chromosilicate containing cations of said metal by heat treating said chromosilicate containing cations of said metal in the presence of a hydrogen-containing atmosphere at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.).
- 30. The method of claim 26, which method comprises further activating said crystals of chromosilicate by heat treating said crystals at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.) in the presence of a hydrogen-containing atmosphere.
- 31. The method of claim 27, wherein said metal is nickel.
- 32. The method of claim 28, wherein said chromosilicate is cation exchanged with a catalytically active metal to provide a chromosilicate containing cations of said metal; drying said chromosilicate containing cations of said metal; and activating the dried chromosilicate containing cations of said metal by heat treating said chromosilicate containing cations of said metal in the presence of a hydrogen-containing atmosphere at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.).
- 33. The method of claim 29, wherein said metal is nickel.
- 34. The method of claim 30, wherein said chromosilicate is cation exchanged with a catalytically active metal to provide a chromosilicate containing cations of said metal; drying said chromosilicate containing cations of said metal; and activating the dried chromosilicate containing cations of said metal by heat treating said chromosilicate containing cations of said metal in the presence of a hydrogen-containing atmosphere at a temperature within the range of about 800.degree. F. (427.degree. C.) to about 1,700.degree. F. (927.degree. C.).
- 35. The method of claim 32, wherein said metal is nickel.
- 36. The method of claim 34, wherein said metal is nickel.
- 37. A crystalline chromosilicate having a composition in terms of mole ratios of oxides as follows:
- 0.9.+-.0.2M.sub.2/n O: Cr.sub.2 O.sub.3 :YSiO.sub.2 :ZH.sub.2 O,
- wherein M is at least one cation having a valence of n, Y is between 4 and about 200 and Z is between 0 and about 160, said chromosilicate having the X-ray diffraction lines and assigned strengths substantially as described in Table II of the specification.
- 38. The composition of claim 37 further characterized in that Y is a value in the range of from about 4 to about 80.
- 39. The composition of claim 37 further characterized in that M is selected from the group consisting of alkylammonium, ammonium, hydrogen, metal cations, and mixtures thereof.
- 40. The composition of claim 39 further characterized in that M comprises nickel.
- 41. The composition of claim 37 further characterized in that M comprises hydrogen, nickel, and an alkali metal.
- 42. The composition of claim 37 further characterized in that M comprises hydrogen and nickel.
- 43. The composition of claim 37 further characterized in that Y is in the range of from about 4 to about 40.
- 44. The composition of claim 43 further characterized in that Z is in the range of from 0 to about 40.
- 45. The composition of claim 37 further characterized in that Z is in the range of from 0 to about 40.
- 46. The composition of claim 37 further characterized in that Y is about 16.
- 47. The composition of claim 37 further characterized in that said chromosilicate has X-ray diffraction lines and assigned strengths substantially as described in Table I of the specification.
- 48. The composition of claim 47 further characterized in that Y is between 4 and about 80 and Z is between 0 and about 40.
- 49. A crystalline chromosilicate having a composition in terms of oxides as follows:
- 0.9.+-.0.2 [WR.sub.2 O+(1-W)M.sub.2/n O]:Cr.sub.2 O.sub.3 :YSiO.sub.2 :ZH.sub.2 O,
- wherein R is tetrapropylammonium, M is an alkali metal cation, W is greater than 0 and less than or equal to 1, Y is between 4 and 200, Z is between 0 and about 160 and having the X-ray diffraction lines and assigned strengths substantially as described in Table III of the specification.
- 50. The chromosilicate of claim 49 further characterized in that Y is in the range of from about 5 to about 100.
- 51. The composition formed by contacting the composition of claim 49 at a temperature in excess of about 500.degree. F. (260.degree. C.) with a hydrogen-containing atmosphere.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part application of co-pending application, U.S. Ser. No. 927,843, filed in the United States Patent and Trademark Office on July 25, 1978, and is now abandoned U.S. Ser. No. 927,843 is, in turn, a continuation application of U.S. Ser. No. 733,269, which was filed in the United States Patent and Trademark Office on Oct. 18, 1976, and is now abandoned.
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3707886 |
Argauer et al. |
Nov 1972 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
733269 |
Oct 1978 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
927843 |
Jul 1978 |
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