Claims
- 1. Catalytic composition comprising zeolite Beta or modified zeolite Beta, and an inorganic binder selected from the group consisting of silica and silica/alumina, wherein at least 25% of the pore volume obtained by adding the fractions of mesoporosity and macroporosity present in the catalytic composition itself consists of pores with a radius higher than 100 .ANG., and wherein the porosity in the fraction with a radius which is greater than 450 .ANG. is less than 0.25 cc/g when the diameter of the catalytic particles is less than or equal to 0.8 mm.
- 2. Catalytic composition according to claim 1 wherein the binder comprises silica.
- 3. Catalytic composition according to claim 1 wherein the binder comprises silica/alumina.
- 4. Catalytic composition according to claim 1 wherein the porosity obtained by adding the fractions of mesoporosity and macroporosity present in the catalytic composition itself, is at least 35% of pore volume with a radius higher than 100 .ANG..
- 5. Process for the alkylation of aromatic compounds comprising putting said compounds in contact with a light olefin in the presence of a catalytic composition in accordance with claim 3, operating at a temperature of between 100 and 300.degree. C. and a pressure of between 10 and 50 atm and a WHSV space velocity of between 0.1 and 200 h.sup.-1.
- 6. Process for the transalkylation of an aromatic hydrocarbon which comprises putting the aromatic hydrocarbon in contact with a polyalkylated aromatic hydrocarbon under at least partial liquid phase conditions in the presence of a catalytic composition according to claim 3.
- 7. Process for the alkylation of aromatic compounds comprising putting said compounds in contact with a light olefin in the presence of a catalytic composition in accordance with claim 1, operating at a temperature of between 100 and 300.degree. C. and a pressure of between 10 and 50 atm and a WHSV space velocity of between 0.1 and 200 h.sup.-1.
- 8. Process according to claim 7 wherein the temperature is between 120 and 230.degree. C., the pressure between 20 and 45 atm and the WHSV space velocity between 1 and 10 h.sup.-1.
- 9. Process according to claim 7 wherein the molar ratio between aromatic compound and olefin is between 1 and 20.
- 10. Process according to claim 7 wherein the molar ratio between aromatic compound and olefin is between 2 and 8.
- 11. Process for the transalkylation of an aromatic hydrocarbon which comprises putting the aromatic hydrocarbon in contact with a polyalkylated aromatic hydrocarbon under at least partial liquid phase conditions in the presence of a catalytic composition according to claim 1.
- 12. Process according to claim 11 carried out at a temperature of between 100 and 350.degree. C., at a pressure of between 10 and 50 atms and at a WHSV of between 0.1 and 200 hours.sup.-1.
- 13. Process in accordance with claim 12 carried out at a temperature of between 150 and 300.degree. C., at a pressure of between 20 and 45 atms and at a WHSV of between 0.1 and 10 hours.sup.-1.
- 14. Process according to claim 11 wherein the molar ratio betwen the aromatic hydrocarbon and polyalkylated aromatic hydrocarbon between 1 and 30.
- 15. Process according to claim 11 wherein the aromatic hydrocarbon is selected from benzene, toluene, ethylbenzene and xylene.
- 16. Process according to claim 15 wherein the aromatic hydrocarbon is benzene.
- 17. Process according to claim 11 wherein the polyalkylated aromatic hydrocarbon is selected from diethylbenzene and diisopropylbenzene.
- 18. Process according to claim 11 wherein the aromatic hydrocarbon is benzene and the polyalkylated aromatic hydrocarbon is diethylbenzene.
- 19. Process according to claim 11 wherein the aromatic hydrocarbon is benzene and the polyalkylated aromatic hydrocarbon is diisopropylbenzene.
- 20. Process for the alkylation of aromatic compounds comprising contacting said compounds with a light olefin in the presence of a catalytic composition, operating at a temperature of between 100 and 300.degree. C. and a pressure of between 10 and 50 atm and a WHSV space velocity of between 0.1 and 200 h.sup.-1, wherein said catalytic composition comprises zeolite Beta or modified zeolite Beta, and an inorganic binder, wherein at least 25% of the pore volume obtained by adding the fractions of mesoporosity and macroporosity present in the catalytic composition itself consists of pores with a radius higher than 100 .ANG., and wherein the porosity in the fraction with a radius which is greater than 450 .ANG. is less than 0.25 cc/g when the diameter of the catalytic particles is less than or equal to 0.8 mm.
- 21. Process for the transalkylation of an aromatic hydrocarbon which comprises contacting the aromatic hydrocarbon with a polyalkylated aromatic hydrocarbon under at least partial liquid phase conditions in the presence of a catalytic composition comprising zeolite Beta or modified zeolite Beta, and an inorganic binder, wherein at least 25% of the pore volume obtained by adding the fractions of mesoporosity and macroporosity present in the catalytic composition itself consists of pores with a radius higher than 100 .ANG..
- 22. Process for the transalkylation of an aromatic hydrocarbon which comprises contacting the aromatic hydrocarbon with a polyalkylated aromatic hydrocarbon under at least partial liquid phase conditions in the presence of a catalytic composition comprising zeolite Beta or modified zeolite Beta, and an inorganic binder, wherein at least 25% of the pore volume obtained by adding the fractions of mesoporosity and macroporosity present in the catalytic composition itself consists of pores with a radius higher than 100 .ANG., and wherein the porosity in the fraction with a radius which is greater than 450 .ANG. is less than 0.25 cc/g when the diameter of the catalytic particles is less than or equal to 0.8 mm.
Priority Claims (1)
Number |
Date |
Country |
Kind |
MI94A1252 |
Jun 1994 |
ITX |
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Parent Case Info
This application is a continuation of Ser. No. 08/478,831, filed Jun. 7, 1995, now U.S. Pat. No. 5,811,612.
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5118896 |
Steigelmann et al. |
Jun 1992 |
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5672799 |
Perego et al. |
Sep 1997 |
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5811612 |
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Sep 1998 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
478831 |
Jun 1995 |
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