Claims
- 1. A process of polymerizing a monomer charge comprising ethylene comprising the steps of:
- (a) drying an inorganic oxide selected from the group consisting of silica, alumina, magnesia, and mixtures thereof, having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol or surface hydroxyl groups, of at least one organometallic compound corresponding to the formula R.sub.x AlR'.sub.y R".sub.z, wherein R is an alkyl group containing 1 to 12 carbon atoms, R' and R" are independently selected from the group consisting of H, and alkyl and alkoxy groups containing 1 to 12 carbon atoms, x has a value of 1 to 3, and y and z each can have a value of 0 to 2 and the sum of y and z is not greater than 3-x, to provide a treated support;
- (c) reacting the thus-treated support with from about 0.001 to about 3 molar proportion, per mol of organometallic compound, of a vanadium component consisting essentially of a mixture of about 10-90 mol percent of VOCl.sub.3 and, correspondingly, about 90-10 mol percent of VCl.sub.4 ;
- (d) contacting in a gas-phase reaction zone containing a trialkylaluminum the catalyst product of step (c) with a monomer charge comprising ethylene to produce a polymerized monomer with a predictable intermediate molecular weight distribution.
- 2. The process of claim 1 wherein the proportion of VCl.sub.4 in the vanadium component is 10-50 mol percent to produce a polymerized monomer having an intermediate molecular weight distribution.
- 3. The process of claim 1 additionally comprising feeding triethylaluminum into the gas-phase reaction zone.
- 4. The process of claim 1 wherein said monomer charge additionally comprises chloroform.
- 5. The process of claim 1 wherein said monomer charge additionally comprises hydrogen.
- 6. The process of claim 1 wherein said monomer charge additionally comprises at least one alpha-olefin containing 3 to 8 carbon atoms.
- 7. The process of claim 1 additionally comprising drying the product of step (c) prior to said contacting step.
- 8. The process of claim 1 wherein said inorganic oxide of step (a) is dried to from about 100.degree. to about 1000.degree. C. until substantially all water is removed, and subsequently cooling prior to step (b) said dried inorganic oxide to ambient temperature.
- 9. The process of claim 1 wherein the organometallic compound is a trialkylaluminum.
- 10. The process of claim 9 wherein the trialkylaluminum is triethylaluminum.
- 11. The process of claim 10 wherein the vanadium component contains at least about 40 mol percent of VCl.sub.4.
- 12. The process of claim 1 wherein the amount of materials employed are such as to provide, as starting materials, from about 5 to about 30 mols of organometallic compound per mol of vanadium compound.
- 13. The process of claim 1 wherein the organometallic compound is employed in an amount such as to provide at least about one mol of organometallic compound per mol of surface hydroxyl groups.
- 14. The process of claim 1 wherein the amount of organometallic compound reacting with the surface hydroxyl groups of the support is the substantially stoichiometric amount.
- 15. The process of claim 1 additionally comprising varying the proportion of VCl.sub.4 in the vanadium component in order to control in a substantially linear relationship the predictable intermediate molecular weight distribution of the produced polymerized monomer.
- 16. The process of claim 1 additionally comprising removing particulate substantially polymerized monomer particles from the reaction zone having a predictable intermediate molecular weight distribution.
- 17. The process of claim 16 additonally comprising recycling unreacted monomer charge from the top of the reaction zone to the bottom of the reaction zone.
- 18. A process of polymerizing a monomer charge including ethylene comprising the steps of:
- (a) drying an inorganic oxide selected from the group consisting of silica, alumina, magnesia, and mixtures thereof, having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol of surface hydroxyl groups, of at least one organometallic compound corresponding to the formula R.sub.x AlR'.sub.y R".sub.z, wherein R is an alkyl group containing 1 to 12 carbon atoms, R' and R" are independently selected from the group consisting of H, and alkyl and alkoxy groups containing 1 to 12 carbon atoms, x has a value of 1 to 3, and y and z each can have a value of 0 to 2 and the sum of y and z is not greater than 3-x, to provide a treated support;
- (c) reacting the thus-treated support with from about 0.001 to about 3 molar proportion, per mol of organometallic compound, of a vanadium component consisting essentially of a mixture of about 10-90 mol percent of VOCl.sub.3, and, correspondingly, about 90-10 mol percent of VCl.sub.4, to produce a catalyst product;
- (d) contacting in a gas-phase reaction zone containing a trialkylaluminum, without washing the catalyst product of step (c), the catalyst product with a monomer charge comprising ethylene to produce a high yield polymerized monomer with a predictable intermediate molecular weight distribution and a normalized viscosity ratio which is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with VOCl.sub.3 alone and the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with VCl.sub.4 alone.
- 19. The process of claim 18 wherein the proportion of VCl.sub.4 in the vanadium component is 10-50 mol percent to produce a polymerized monomer having an intermediate molecular weight distribution.
- 20. The process of claim 19 comprising reacting the thus-treated support with from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of a vanadium component consisting essentially of a mixture of about 50 mol percent of VOCl.sub.3 and, correspondingly, about 50 mol percent of VCl.sub.4, wherein said normalized viscosity ratio of said produced polymerized monomer is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of VOCl.sub.3 alone, and the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with from about 0.03 to about 0.06 molar proportion, per mol of triethylaluminum, of VCl.sub.4 alone.
- 21. The process of claim 20 wherein said molar proportion, per mol of triethylaluminum, of VOCl.sub.3 and said per molar proportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 1 g. of silicon dioxide support means.
- 22. The process of claim 20 wherein said per molar proportion, per mol of triethylaluminum, of VOCl.sub.3 and said per molar proportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 g. of silicon dioxide support means, and wherein the monomer charge contacted with a catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone has the larger normalized viscosity ratio and wherein the difference in the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone and the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VCl.sub.4 alone is about 0.50 or less.
- 23. The process of claim 18 additionally comprising feeding triethylaluminum into the gas-phase reaction zone.
- 24. The process of claim 18 wherein said monomer charge additionally comprises chloroform.
- 25. The process of claim 18 wherein said monomer charge additionally comprises hydrogen.
- 26. The process of claim 18 wherein said monomer charge additionally comprises at least one alpha-olefin containing 3 to 8 carbon atoms.
- 27. The process of claim 18 additionally comprising drying the product of step (c) prior to said contacting step.
- 28. The process of claim 18 wherein said inorganic oxide of step (a) is dried from about 100.degree. to about 1000? C. until substantially all water is removed, and subsequently cooling prior to step (b) said dried inorganic oxide to ambient temperature.
- 29. The process of claim 18 wherein the organometallic compound is a trialkylaluminum.
- 30. The process of claim 29 wherein the trialkylaluminum is triethylaluminum.
- 31. The process of claim 30 wherein the vanadium component contains at least about 40 mol percent of VCl.sub.4.
- 32. The process of claim 18 wherein the amount of materials employed are such as to provide, as starting materials, from about 5 to about 30 mols of organometallic compound per mol of vanadium compound.
- 33. The process of claim 18 wherein the organometallic compound is employed in an amount such as to provide at least about one mol of organometallic compound per mol of surface hydroxyl groups.
- 34. The process of claim 18 wherein the amount of organometallic compound reacting with the surface hydroxyl groups of the support is the substantially stoichiometric amount.
- 35. The process of claim 18 additionally comprising varying the proportion of VCl.sub.4 in the vanadium component in order to control in a substantially linear relationship the predictable intermediate molecular weight distribution of the produced polymerized monomer.
- 36. The process of claim 18 additionally comprising removing particulate substantially polymerized monomer particles from the reaction zone having a predictable intermediate molecular weight distribution.
- 37. The process of claim 36 additionally comprising recycling unreacted monomer charge from the top of the reaction zone to the bottom of the reaction zone.
- 38. A process of polymerizing a monomer charge comprising ethylene comprising the steps of:
- (a) drying a silicon dioxide support means having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol of surface hydroxyl groups, of triethylaluminum, to provide a treated support;
- (c) reacting the thus-treated support with from about 0.001 to about 3 molar proportion, per mol of triethylaluminum, of a vanadium component consisting essentially of a mixture of about 10-90 mol percent of VOCl.sub.3 and, correspondingly, about 90-10 mol percent of VCl.sub.4 ;
- (d) contacting in a gas-phase reaction zone containing a trialkylaluminum, without having washed the catalyst product of step (c), the catalyst with a monomer charge comprising ethylene to produce a high yield polymerized monomer with a predictable intermediate molecular weight distribution and a normalized viscosity ratio which is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with VOCl.sub.3 alone and the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with VCl.sub.4 alone.
- 39. The process of claim 38 comprising reacting the thus-treated support with between about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of a vanadium component consisting essentially of a mixture of about 50 mol percent of VOCl.sub.3 and, correspondingly, about 50 mol perecent of VCl.sub.4 such that said normalized viscosity ratio of said produced polymerized monomer is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with between about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of VOCl.sub.3 alone, and the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with between about 0.03 to bout 0.06 molar porportion, per mol of triethylaluminum, of VCl.sub.4 alone.
- 40. The process of claim 39 wherein said per molar proportion, per mol of triethylaluminum, of VOCl.sub.3 and said per molar proportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 g. of silicon dioxide support means.
- 41. The process of claim 39 wherein said per molar proportion, per mol of trrethylaluminum, of VOCl.sub.3 and said per molar proportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 g. of silicon dioxide dioxide support means, and wherein the monomer charge contacted with a catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone has the larger normalized viscosity ratio and the difference in the normalized viscosity ratio and the difference in the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone and the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VCl.sub.4 alone is about 0.50 or less.
- 42. The process of claim 38 wherein the proportion of VCl.sub.4 in the vanadium component is 10-50 mol percent to produce a polymerized monomer having an intermediate molecular weight distribution.
- 43. The process of claim 42 comprising reacting the thus-treated support with from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of a vanadium component consisting essentially of a mixture of about 50 mol percent of VOCl.sub.3 and, correspondingly, about 50 mol percent of VCl.sub.4, wherein said normalized viscosity ratio of said produced polymerized monomer is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminu, of VOCl.sub.3 alone, and the normalzied viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with from about 0.03 to about 0.06 molar proportion, per mol of triethylaluminum, of VCl.sub.4 alone.
- 44. The process of claim 43 wherein said per molar proportion, per mol of triethylaluminum, of VOCl.sub.3 and said per molar proportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 g. of silicon dioxide support means.
- 45. The process of claim 43 wherein said per molar proportion, per mol of treithylaluminum, of VOCl.sub.3 and said per molar porportion, per mol of triethylaluminum, of VCl.sub.4, are each per 1 g. of silicon dioxide support means, and wherein the monomer charge contacted with a catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone has the larger normalized viscosity ratio and wherein the difference in the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone and the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VCl.sub.4 alone is about 0.50 or less.
- 46. The process of claim 45 additionally comprising feeding triethylaluminum into the gas-phase reaction zone.
- 47. The process of claim 46 wherein said monomer charge additionally comprises chloroform.
- 48. The process of claim 47 wherein said monomer charge additionally comprises hydrogen.
- 49. The process of claim 48 wherein said monomer charge additionally comprises at least one alpha-olefin contain 3 to 8 carbon atoms.
- 50. The process of claim 49 additionally comprising drying the product of step (c) prior to said contacting step.
- 51. The process of claim 49 wherein said inorganic oxide of step (a) is dried to from about 100.degree. to about 1000.degree. C. until substantially all water is removed, and subsequently cooling prior to step (b) said dried inorganic oxide to ambient temperature.
- 52. The process of claim 38 additionally comprising varying the proportion of VCl.sub.4 in the vanadium component in order to control in a substantially linear relationship the predictable intermediate molecular weight distribution of the produced polymerized monomer.
- 53. The process of claim 38 additionally comprising removing particulate substantially polymerized monomer particles from the reaction zone having a predictable intermediate molecular weight distribution.
- 54. The process of claim 53 additionally comprising recycling unreacted monomer charge from the top of the reaction zone to the bottom of the reaction zone.
- 55. A process of polymerizing a monomer charge comprising ethylene, hydrogen and chloroform, comprising the steps of:
- (a) drying a silicon dioxide support means having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol of surface hydroxyl groups, of triethylaluminum, to provide a treated support;
- (c) reacting the thus-treated support from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum,
- of a vanadium component consisting essentially of a mixture of about 50 mol percent of VOCl.sub.3 and, correspondingly, about 50 mol percent of VCl.sub.4 ;
- (d) contacting in a gas-phase reaction zone, without washing the catalyst product of step (c), the catalyst product with a monomer charge comprising ethylene, hydrogen, and chloroform to produce a high yield polymerized monomer with a predictable intermediate molecular weight distribution and a normalized viscosity ratio which is between the normalized viscosity ratio of a polymerized monomer charge resulting from contacting the monomer charge with a catalyst product produced by reacting the thus-treated support of step (b) with from about 0.07 to about 0.125 molar proportion, per mol of triethylaluminum, of VOCl.sub.3 alone, and the normalized viscosity ratio of a polymized monomer charge resulting from contacting the monomer charge with a catalyst product by reacting the thus-treated support of step (b) with from about 0.03 to about 0.06 molar proportion, per mol of triethylaluminum, of VCl.sub.4 alone, and wherein the difference in the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with the VOCl.sub.3 alone and the normalized viscosity ratio of the polymerized monomer charge produced from contacting the catalyst product produced by reacting the thus-treated support of step (b) with VCl.sub.4 alone is about 0.50 or less, with the VOCl.sub.3 alone having the larger normalized viscosity ratio;
- (e) feeding triethylaluminum into the gas-phase reaction zone;
- (f) varying the proportion of VCl.sub.4 in the vanadium component in order to control in a substantially linear realtionship the predictable intermediate molecular weight distribution of the produced polymerized monomer; and
- (g) removing a high yield polymerized monomer from the reaction zone having a predictable intermediate molecular weight distribution.
- 56. The process of claim 55 wherein the propportion of VCl.sub.4 in the vanadium component is from 10 mol percent to less than about 50 mol percent to produce a polymerized monomer having an intermediate molecular weight distribution.
- 57. The process of claim 55 additionally comprising recycling unreacted monomer charge from the top of the reaction zone to the bottom of the reaction zone.
- 58. A process of polymerizing a monomer charge comprising chloroform, ethylene, and hydrogen in a gas-phase, fluidized-bed reaction zone which comprises a bed of particulate substantially polymerized ethylene particles and is under operating conditions for polymerizing ethylene using the monomer charge, said process comprising the steps of:
- (a) drying at from about 100.degree. C. to about 1000.degree. C. an inorganic oxide selected from the group consisting of silica, alumina, magnesia, and mixtures thereof, having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) cooling the dried inorganic oxide of step (a) to ambient temperature;
- (c) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol of surface hydroxyl groups, of at least one organometallic compound corresponding to the formula R.sub.x AlR'.sub.y R".sub.z, wherein R is an alkyl group containing 1 to 12 carbon atoms, R' and R" are independently selected from the group consisting of H, andalkyl and alkoxy groups containing 1 to 12 carbon atoms, x has a value of 1 to 3, and y and z each can have a value of 0 to 2 and the sum of y and z is not greater than 3-x, to provide a treated support;
- (d) reacting the thus-treated support with from about 0.001 to about 3 molar proportion, per mol of organometallic compound, of a vanadium component consisting essentially of a mixture of about 10-90 mol percent of VOCl.sub.3 and, correspondingly, about 90-10 mol percent of VCl.sub.4 ;
- (e) drying the product of step (d);
- (f) feeding the product of step (e) into a gas-phase reaction zone in order to form part of the bed in the fluidized-bed reaction zone;
- (g) feeding, separately and independently of said feeding step (f), into the gas-phase reaction zone triethylaluminum such that such bed in the gas-phase reaction zone comprises the product of step (f), triethylaluminum, and particulate substantially polymerized etylene particles;
- (h) fluidizing the bed of step (g) at a temperature from about 50.degree. C. to about 120.degree. C. by introducing into the reaction zone a gas mixture comprising ethylene, hydrogen, and chloroform;
- (i) removing particulate substantially polymerized ethylene particles from the reaction zone having a predictable intermediate molecular weight distribution; and
- (j) recycling unreacted gas mixture of step (h) from the top of the reaction zone, through a heat exchanger means, and into the bottom of the reaction zone.
- 59. A process of polymerizing a monomer charge comprising an alpha olefin, chloroform, ethylene, and hydrogen in a gas-phase, fluidized-bed reaction zone which comprises a bed of particulate substantially polymerized ethylene particles and is under operating conditions for polymerizing ethylene using the monomer charge, said process comprising the steps of:
- (a) drying at from about 100.degree. C. to about 1000.degree. C. an inorganic oxide selected from the group consisting of silica, alumina, magnesia, and mixtures thereof, having surface hydroxyl groups to form a support that is substantially free of adsorbed water;
- (b) cooling the dried inorganic oxide of step (a) to ambient temperatures;
- (c) reacting the surface hydroxyl groups of the support with at least about 0.5 mol, per mol of surface hydroxyl groups, of at least one organo-metallic compound corresponding to the formula R.sub.x AlR'.sub.y R"z, wherein R is an alkyl group containing 1 to 12 carbon atoms, R' and R" are independently selected from the group consisting of H, and alkyl and alkoxy groups containing 1 to 12 carbon atoms, x has a value of 1 to 3, and y and z each can have a value of 0 to 2 and the sum of y and z is not greater than 3-x, to provide a treated support;
- (d) reacting the thus-treated support with from about 0.001 to about 3 molar proportion, per mol of organometallic compound, of a vanadium component consisting essentially of a mixture of about 10-90 mol percent of VOCl.sub.3 and, correspondingly, about 90-10 mol percent of VCl.sub.4 ;
- (e) drying the product of step (d);
- (f) feeding, the product of step (e) into a gas-phase reaction zone in order to form part of the bed in the fluidized-bed reaction zone;
- (g) feeding, separately and independently of said feeding step (f), into the gas-phase reaction zone triethylaluminum such that such bed in the gas-phase reaction zone comprises the product of step (f), triethylaluminum and particulate substantially polymerized ethylene particles;
- (h) fluidizing the bed of step (g) at a temperature from about 50.degree. C. to about 120.degree. C. by introducing into the reaction zone a gas mixture comprising ethylene, hydrogen, an alpha olefin, and chloroform;
- (i) removing particulate substantially polymerized ethylene particles from the reaction zone having a predictable intermediate molecular weight distribution; and
- (j) recycling unreacted gas mixture of step (h) from the top of the reaction zone, through a heat exchanger means, and into the bottom of the reaction zone.
Parent Case Info
This is a continuation-in-part application of my co-pending application filed on Dec. 29, 1983 and having U.S. Ser. No. 566,539, now abandoned. My co-pending application was a divisional application of an application which had U.S. Ser. No. 444,296 and a filing date of Nov. 24, 1982 and now U.S. Pat. No. 4,435,520.
US Referenced Citations (9)
Divisions (1)
|
Number |
Date |
Country |
Parent |
444296 |
Nov 1982 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
566539 |
Dec 1983 |
|