Claims
- 1. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics comprising contacting said alkylcyclopentanes under dehydroisomerization conditions with a catalyst comprising:
- (a) a large-pore zeolite;
- (b) at least one Group VIII metal; and
- (c) an alkaline earth metal selected from the group consisting of barium, strontium and calcium.
- 2. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 1 wherein said alkaline earth metal is barium and said Group VIII metal is platinum.
- 3. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 2 wherein said large-pore zeolite has an apparent pore size of from 7 to 9 Angstroms.
- 4. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 3 wherein said catalyst has from 0.1% to 5% by weight platinum and from 0.1% to 35% by weight barium.
- 5. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 4 wherein said large-pore zeolite is selected from the group consisting of zeolite X, zeolite Y and type L zeolite.
- 6. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 5 wherein said large-pore zeolite is zeolite Y.
- 7. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 5 wherein said large-pore zeolite is a type L zeolite.
- 8. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 7 wherein said catalyst has from 0.1% to 20% by weight barium.
- 9. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 8 wherein the majority of the crystals of said type L zeolite are larger than 500 Angstroms.
- 10. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 9 wherein the majority of the crystals of said type L zeolite are large than 1000 Angstroms.
- 11. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 10 wherein at least 80% of the crystals of said type L zeolite are larger than 1000 Angstroms.
- 12. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 11 wherein said catalyst comprises:
- (a) a type L zeolite containing from 0.1% to 1.5% by weight platinum and from 1% to 20% by weight barium; and
- (b) an inorganic binder.
- 13. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 12 wherein said inorganic binder is selected from the group consisting of silica, alumina, and aluminosilicates.
- 14. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 8 wherein said contacting occurs at a temperature of from 800.degree. to 1000.degree. F.; an LHSV of from 0.1 to 20; a pressure of from 0 to 500 psig; and an H.sub.2 /HC ratio of from 0 to 20.
- 15. A method of dehydroisomerization of alkylcyclopentanes to produce aromatics according to claim 14 wherein said contacting occurs at a temperature of from 820.degree. to 950.degree. F.; an LHSV of from 0.5 to 10; a pressure of from 1 atm., to 300 psig; and an H.sub.2 /HC ratio of from 1 to 10.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of application Ser. No. 344,570, filed Feb. 1, 1982, and now abandoned, and application Ser. No. 344,572, filed Feb. 1, 1982.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3783123 |
Young |
Jan 1974 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
344570 |
Feb 1982 |
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