Claims
- 1. A method for preparing a crystalline aluminosilicate having a high silica to alumina molar ratio and an X-ray diffraction pattern substantially the same as that of ZSM- 5 zeolite which method comprises mixing a source of silica, a source of alumina, a source of alkali metal, water and at least one alkanolamine according to Formula (I): ##STR4## wherein any two of R.sup.1, R.sup.2 and R.sup.3 are independently alkylol groups and the remaining one of R.sup.1, R.sup.2 and R.sup.3 is a hydrogen atom or all of R.sup.1, R.sup.2 and R.sup.3 are independently alkylol groups, the alkylol groups being --CH.sub.2 --R--OH, wherein R is --CH.sub.2 --, --CH.sub.2 CH.sub.2 --, or --CH(CH.sub.3)--, the ratio of said source of silica to said source of alumina being at least 20:1 based on the equivalent moles of silica and alumina in said respective sources, maintaining said mixture at a temperature above about 120.degree. C. and recovering the crystalline aluminosilicate formed.
- 2. A method according to claim 1 wherein said alkanolamine of formula (I) is diethanolamine.
- 3. A method according to claim 1 wherein said alkanolamine of formula (I) is triethanolamine.
- 4. A method according to claim 1 wherein said alkanolamine of formula (I) is dipropanolamine.
- 5. A method according to claim 1 wherein said alkanolamine of formula (I) is tripropanolamine.
- 6. A method for preparing a crystalline aluminosilicate having a high silica to alumina molar ratio and an X-ray diffraction pattern substantially the same as that of ZSM-5 zeolite which method comprises mixing a source of silica, a source of alumina, a source of alkali metal, water and the precursors of at least one alkanolamine according to formula (I) as defined in claim 1, said precursors consisting of ethylene oxide or propylene oxide and a nitrogen-containing compound having one or more hydrogen atoms attached to a nitrogen atom selected from the group consisting of ammonia, monoethanolamine, monopropanolamine, diethanolamine and dipropanolamine, the ratio of said source of silica to said source of alumina being at least 20:1 based on the equivalent moles of silica and alumina in said respective sources, maintaining said mixture at a temperature above about 120.degree. C. and recovering the crystalline aluminosilicate formed.
- 7. A method according to claim 6 wherein said precursors consist of ethylene oxide and ammonia.
- 8. A method according to claim 6 wherein said precursors consist of propylene oxide and ammonia.
- 9. A method according to claim 6 wherein said precursors consist of ethylene oxide and monoethanolamine.
- 10. A method according to claim 6 wherein the molar ratio of said ethylene oxide or propylene oxide to said nitrogen-containing compound is in the range from 10:1 to 2:1.
- 11. A method according to either claim 1 or claim 6 wherein said temperature is in the range from 135.degree. to 210.degree. C.
- 12. A method according to either claim 1 or claim 6 wherein said temperature is in the range from 135.degree. to 190.degree. C.
- 13. A method according to either claim 1 or claim 6 wherein said crystalline aluminosilicate product is recovered after a time not less than 4 hours.
- 14. A method according to either claim 1 or claim 6 wherein said ratio of said sources of silica to said source of alumina is in the range from 20:1 to 150:1.
- 15. A method according to either claim 1 or claim 6 wherein said ratio of said source of silica to said source of alumina is from 20:1 to 100:1.
- 16. A method according to either claim 1 or claim 6 wherein the ratio of the number of mole equivalents of total silica and alumina in said sources of silica and alumina is in the range from 2:1 to 0.02:1.
- 17. A method according to either claim 1 or claim 6 wherein the ratio of the number of moles of said alkanolamine of formula (I) to the number of mole equivalents of total silica and alumina in said sources of silica and alumina is in the range from 10:1 to 0.02:1.
- 18. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein the alkali metal content of said recovered crystalline aluminosilicate is reduced to a level of 0.2% by weight or less by subjecting it to one or more ion-exchanges.
- 19. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein the active hydrogen-form of said recovered crystalline aluminosilicate is produced by ion-exchanging said crystalline aluminosilicate with a solution containing ammonium ions to form an ammonium ion-exchanged crystalline aluminosilicate and thereafter calcining said ammonium ion-exchanged crystalline aluminosilicate.
- 20. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein said recovered crystalline aluminosilicate is activated by heating in air at a temperature in the range 400.degree. to 700.degree. C. for a period of from 2 to 48 hours.
- 21. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein the crystalline aluminosilicate reaction product is impregnated with a compound of at least one metal selected from the group consisting of copper, silver, zinc, gallium, indium, thallium, lead, antimony, bismuth, iron, cobalt, nickel, ruthenium, rhodium, palladium, iridium and platinum.
- 22. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein said recovered crystalline aluminosilicate is impregnated with a compound of gallium.
- 23. A method for preparing a crystalline aluminosilicate as defined in either claim 1 or claim 6 wherein said recovered crystalline aluminosilicate is treated with a suitable compound containing a non-metallic element selected from the group consisting of boron and phosphorus to incorporate said non-metallic element into the aluminosilicate.
Priority Claims (2)
Number |
Date |
Country |
Kind |
53645/77 |
Dec 1977 |
GBX |
|
31636/78 |
Jul 1978 |
GBX |
|
Parent Case Info
This application is a continuation-in-part of application Ser. No.: 969,456 filed on Dec. 14, 1978, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1955095 |
Sep 1970 |
DEX |
2746844 |
Apr 1979 |
DEX |
1365318 |
Aug 1974 |
GBX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
969456 |
Dec 1978 |
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