Claims
- 1. A silicate or metallosilicate having an x-ray diffraction pattern as set forth in Table 1 of the specification.
- 2. The metallosilicate of claim 1 which contains aluminum in an amount of less than about 2 percent by weight.
- 3. The silicate or metallosilicate of claim 1, which exhibits, after calcination, an x-ray pattern as set forth in table 2.
- 4. The silicate or metallosilicate of claim 1, ion-exchanged to contain hydrogen ions, ammonium, cations of at least one metal selected from the group consisting of rare earth metals, manganese, calcium, magnesium, zinc, cerium, palladium, nickel, copper, titanium, aluminum, tin, iron and cobalt, or mixtures thereof.
- 5. The metalloxilicate of claim 2, ion-exchanged to contain hydrogen ions, ammonium, cations of at least one metal selected from the group consisting of rare earth metals, manganese, calcium, magnesium, zinc, cerium, palladium, nickel, copper, titanium, aluminum, tin, iron and cobalt, or mixtures thereof.
- 6. The metallosilicate of claim 3, ion-exchanged to contain hydrogen ions, ammonium, cations of at least one metal selected from the group consisting of rare earth metals, manganese, calcium, magnesium, zinc, cerium, palladium, nickel, copper, titanium, aluminum, tin, iron and cobalt, or mixtures thereof.
- 7. The silicate or metallosilicate of claim 1, which has a formula, expressed in terms of mole ratios of oxides in the anhydrous state, which is (3.5 to 6.0)RO.multidot.(0 to 1) M.sub.2/m O.multidot.Al.sub.2 O.sub.3 .multidot.(100 to 5000) SiO.sub.2 wherein R is ##STR2## wherein n is 4 or 5 ; and M is alkali metal cation and m is 1.
- 8. The silicate or metallosilicate of claim 3, which before calcination has a formula, expressed in terms of mole ratios of oxides in the anhydrous state, which is (3.5 to 6.0) RO.multidot.(0 to 1) M.sub.2/m .multidot.Al.sub.2 O.sub.3 .multidot.(100 to 5000) SiO.sub.2 wherein R is ##STR3## wherein n is 4 or 5; and M is alkali metal cation and m is 1.
- 9. A silicate or metallosilicate having an x-ray diffraction pattern as set forth in Table 2 of the specification.
- 10. The silicate or metallosilicate of claim 9 which contains aluminum in an amount of less than about 2 percent by weight.
- 11. The silicate or metallosilicate of claim 9, ion-exchanged to contain hydrogen ions, ammonium, cations of at least one metal selected from the group consisting of rare earth metals, manganese, calcium, magnesium, zinc, cerium, palladium, nickel, copper,titanium, aluminium, tin, iron and cobalt, or mixtures thereof.
- 12. The silicate or metallosilicate of claim 10, ion-exchanged to contain protons,ammonium, cations of at least one metal selected from the group consisting of manganese, calcium magnesium, zinc, cerium, palladium, nickel, copper, titanium, aluminum, tin, iron and cobalt, or mixtures thereof.
- 13. A catalyst composition comprising the silicate or metallosilicate of claim 1.
- 14. A catalyst composition comprising the silicate or metallosilicate of claim 9.
- 15. A silicate or metallosilicate having the x-ray diffraction pattern of FIG. 1.
Parent Case Info
This is a continuation of copending application Ser. No. 797,084, filed on Nov. 12, 1985 now abandoned.
US Referenced Citations (8)
Non-Patent Literature Citations (2)
Entry |
Hans P. Eugster, "Hydrous Sodium Silicates from Lake Magadi Kenya, Precursors of Bedded Chert," Science vol. 157 5 Jul. 1967, pp. 1177-1180. |
A. Araya et al; "Synthesis and Characterization of Zeolite Nu-10", Zeolites, vol. 4, Jul. 1984 pp. 280-286. |
Continuations (1)
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Number |
Date |
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797084 |
Nov 1985 |
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