Claims
- 1. A process for the improvement of a vanadium-phosphorus-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm, and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter reducing or discontinuing application of the phosphorus compound at a point in time when the initial exotherm portion of the catalyst bed is still undergoing deactivation, thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 2. The process of claim 1 wherein the feed gas is butane.
- 3. The process of claim 2 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 4. The process of claim 2 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 5. The process of claim 1 and claim 4 wherein the amount of water added is about 1000 to about 40,000 parts per million by weight based on the total weight of the feed gas stream.
- 6. The process of claim 2 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 7. The process of claim 5 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 8. The process of claim 7 wherein the alkyl ester is triethylphosphate.
- 9. The process of claim 7 wherein the alkyl ester is trimethylphosphate.
- 10. The process of claim 1 wherein the organophosphorus compound is selected from the group consisting of: ##STR2## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 11. A process for the improvement of a vanadium-phosphorus-oxygen co-metal catalyst having a phosphorus to vandium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm, and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter reducing or discontinuing application of the phosphorus compound at a point in time when the initial exotherm portion of the catalyst bed is still undergoing deactivation, thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 12. The process of claim 11 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 13. The process of claim 11 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 14. The process of claim 11 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 15. The process of claim 14 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 16. The process of claim 15 wherein the alkyl ester of orthophosphoric acid is triethylphosphate.
- 17. The process of claim 15 wherein the alkyl ester of orthophosphoric acid is trimethylphosphate.
- 18. The process of claim 11 wherein the organophosphorus compound is selected from the group consisting of: ##STR3## wherein R is phenyl or alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 19. A process for the improvement of a vanadium-phosphorus-zinc-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm, and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter reducing or discontinuing application of the phosphorus compound at a point in time when the initial exotherm portion of the catalyst bed is still undergoing deactivation, thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 20. The process of claim 19 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 21. The process of claim 19 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 22. The process of claim 19 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 23. The process of claim 22 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 24. The process of claim 23 wherein the alkyl ester of orthophosphoric acid is triethylphosphate.
- 25. The process of claim 23 wherein the alkyl ester of orthophosphoric acid is trimethylphosphate.
- 26. The process of claim 19 wherein the organophosphorus compound is selected from the group consisting of: ##STR4## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 27. A process for the improvement of a vanadium-phosphorus-molybdenum-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm, and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter reducing or discontinuing application of the phosphorus compound at a point in time when the initial exotherm portion of the catalyst bed is still undergoing deactivation, thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 28. The process of claim 27 wherein the catalyst bed has a temperature of about 300.degree.to about 500.degree. C.
- 29. The process of claim 26 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 30. The process of claim 27 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 31. The process of claim 30 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 32. The process of claim 31 wherein the alkyl ester of orthophosphoric acid is triethylphosphate.
- 33. The process of claim 31 wherein the alkyl ester of orthophosphoric acid is trimethylphosphate.
- 34. The process of claim 27 wherein the organophosphorus compound is selected from the group consisting of: ##STR5## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 35. A process for the improvement of a vanadium-phosphorus-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, reducing the ratio of the amount of phosphorus compound to the amount of water being applied to the bed thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 36. The process of claim 35 wherein said reduction of the ratio of the amount of phosphorus compound to the amount of water being applied to the catalyst bed is brought about by increasing the amount of water applied to the catalyst bed.
- 37. The process of claim 35 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 38. The process of claim 35 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 39. The process of claim 35 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 40. The process of claim 35 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 41. The process of claim 40 wherein the alkyl ester is triethylphosphate.
- 42. The process of claim 40 wherein the alkyl ester is trimethylphosphate.
- 43. The process of claim 35 wherein the organo-phosphorus compound is selected from the group consisting of: ##STR6## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 44. A process for the improvement of a vanadium-phosphorus-oxygen-co-metal catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, reducing the ratio of the amount of phosphorus compound to the amount of water being applied to the bed thereby allowing the partially deactivated exotherm portion to reactivate producing a more isothermal catalyst bed.
- 45. The process of claim 44 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 46. The process of claim 44 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 47. The process of claim 44 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 48. The process of claim 44 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 49. The process of claim 48 wherein the alkyl ester is triethylphosphate.
- 50. The process of claim 48 wherein the alkyl ester is trimethylphosphate.
- 51. The process of claim 44 wherein the organophosphorus compound is selected from the group consisting of: ##STR7## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 52. The process of claim 44 wherein said reduction of the ratio of the amount of phosphorous to the amount of water being applied to the catalyst bed is brought about by increasing the amount of water being applied to the catalyst bed.
- 53. A process for the improvement of a vanadium-phosphorus-zinc-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a fed gas stream comprising C.sub.4 hydrocarbons, benzene or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, reducing the ratio of the amount of phosphorus compound to the amount of water being applied to the bed thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 54. The process of claim 53 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 55. The process of claim 53 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 56. The process of claim 53 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 57. The process of claim 53 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 58. The process of claim 57 wherein the alkyl ester is triethylphosphate.
- 59. The process of claim 57 wherein the alkyl ester is trimethylphosphate.
- 60. The process of claim 53 wherein the organophosphorus compound is selected from the group consisting of: ##STR8## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 61. The process of claim 53 wherein said reduction of the ratio of the amount of phosphorous to the amount of water being applied to the catalyst bed is brought about by increasing the amount of water being applied to the catalyst bed.
- 62. The process of claim 53 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 63. The process of claim 53 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 64. The process of claim 53 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 65. The process of claim 53 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 66. The process of claim 65 wherein the alkyl ester is triethylphosphate.
- 67. The process of claim 65 wherein the alkyl ester is trimethylphosphate.
- 68. The process of claim 53 wherein the organo-phosphorus compound is selected from the group consisting of: ##STR9## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 69. A process for the improvement of a vanadium-phosphorous-molybdenum-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1 which catalyst is present on a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene or butane which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, reducing the ratio of the amount of phosphorus compound to the amount of water being applied to the bed thereby allowing the partially deactivated exotherm portion to reactivate by producing a more isothermal catalyst bed.
- 70. The process of claim 69 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 71. The process of claim 69 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 72. The process of claim 69 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 73. The process of claim 69 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 74. The process of claim 73 wherein the alkyl ester is triethylphosphate.
- 75. The process of claim 73 wherein the alkyl ester is trimethylphosphate.
- 76. The process of claim 59 wherein the organophosphorus compound is selected from the group consisting of: ##STR10## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 77. The process of claim 64 wherein said reduction of the ratio of the amount of phosphorous to the amount of water being applied to the catalyst bed is brought about by increasing the amount of water being applied to the catalyst bed.
- 78. A process for the improvement of a vanadium-phosphorus-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1, which catalyst is present in a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane, which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst bed containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, discontinuing application of the phosphorus compound while allowing the water application to continue, thereby allowing the partially deactivated exotherm to reactivate by producing a more isothermal catalyst bed.
- 79. A process for the improvement of a vanadium-phosphorus-oxygen-co-metal catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1, which catalyst is present in a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane, which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst bed containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, discontinuing application of the phosphorus compound while allowing the water application to continue, thereby allowing the partially deactivated exotherm to reactivate by producing a more isothermal catalyst bed.
- 80. The process of claim 79 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 81. The process of claim 79 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 82. The process of claim 79 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 83. The process of claim 79 wherein th alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 84. The process of claim 83 wherein the alkyl ester is triethylphosphate.
- 85. The process of claim 83 wherein the alkyl ester is trimethylphosphate.
- 86. The process of claim 79 wherein the organo-phosphorus compound is selected from the group consisting of: ##STR11## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 87. A process for the improvement of a vanadium-phosphorus-zinc-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1, which catalyst is present in a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane, which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst bed containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, discontinuing application of the phosphorus compound while allowing the water application to continue, thereby allowing the partially deactivated exotherm to reactivate by producing a more isothermal catalyst bed.
- 88. The process of claim 87 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 89. The process of claim 87 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 90. The process of claim 87 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 91. The process of claim 87 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 92. The process of claim 91 wherein the alkyl ester is triethylphosphate.
- 93. The process of claim 91 wherein the alkyl ester is trimethylphosphate.
- 94. The process of claim 87 wherein the organo-phosphorus compound is selected from the group consisting of: ##STR12## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 95. A process for the improvement of a vanadium-phosphorus-molybdenum-oxygen catalyst having a phosphorus to vanadium atomic ratio of about 2:1 to about 0.8:1, which catalyst is present in a catalyst bed having a portion thereof containing an initial exotherm of reaction, said catalyst being suitable for use in the manufacture of maleic anhydride from a feed gas stream comprising C.sub.4 hydrocarbons, benzene, or butane, which process comprises: applying to the catalyst bed, simultaneously with introduction of said feed gas stream thereon, water and a phosphorus compound in an amount sufficient to initiate (a) deactivation of said portion of the catalyst bed containing the initial exotherm and (b) formation of a new exotherm downstream in the catalyst bed from the initial exotherm, and thereafter, at such time that the initial exotherm portion of the catalyst bed is still undergoing deactivation, discontinuing application of the phosphorus compound while allowing the water application to continue, thereby allowing the partially deactivated exotherm to reactivate by producing a more isothermal catalyst bed.
- 96. The process of claim 95 wherein the catalyst bed has a temperature of about 300.degree. to about 500.degree. C.
- 97. The process of claim 95 wherein the amount of the phosphorus compound added per day is about 0.005 up to about 5 grams per kilogram of the total catalyst in the catalyst bed.
- 98. The process of claim 95 wherein the organophosphorus compound is an alkyl ester of orthophosphoric acid.
- 99. The process of claim 95 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P=O
- wherein R is a hydrogen or a C.sub.1 to C.sub.4 alkyl, at least one R being a C.sub.1 to C.sub.4 alkyl.
- 100. The process of claim 99 wherein the alkyl ester is triethylphosphate.
- 101. The process of claim 99 wherein the alkyl ester is trimethylphosphate.
- 102. The process of claim 95 wherein the organo-phosphorus compound is selected from the group consisting of: ##STR13## wherein R is phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
Parent Case Info
This is a continuation of application Ser. No. 736,942, filed May 22, 1985, which in turn is a continuation in part of Ser. No. 530,202, filed Sept. 8, 1983, both abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1071647 |
Feb 1980 |
CAX |
2550119 |
May 1976 |
DEX |
1464198 |
Feb 1977 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
736942 |
May 1985 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
530202 |
Sep 1983 |
|