Claims
- 1. A process for manufacture of a phosphorus-vanadium oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having from about 2 to about 10 carbon atoms, with a phosphoryl halide in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 2. The process of claim 1 wherein the vanadium compound is vanadium pentoxide.
- 3. The process of claim 1 wherein the ether is tetrahydrofuran.
- 4. A process for the manufacture of a phosphorus-vanadium oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having from about 2 to about 10 carbon atoms, with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, wherein the phosphorus-vanadium oxide catalyst is dissolved and the dissolved phosphorus-vanadium oxide catalyst is solidified by evaporation or distillation of the organic solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorous compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 5. The process for the manufacture of a phosphorus-vanadium oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having from about 2 to about 10 carbon atoms, with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and an alkyl ester of orthophosphoric acid at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 6. The process of claim 5 wherein the ether is tetrahydrofuran.
- 7. The process of claim 5 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P.dbd.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 for the manufacture of a phosphorus-vanadium oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in fan organic ether solvent having from about 2 to about 10 carbon atoms, with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst at a temperature of about 300.degree. C. to about 500.degree. C. by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream and a phosphorus compound selected from the group consisting of: ##STR3## wherein R is a phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 11. A process for the manufacture of a phosphorus-vanadium cometal oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein a cometal is used as a promoter and wherein the total atomic ratio of the cometal to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl halide in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 12. The process of claim 11 wherein the vanadium compound is vanadium pentoxide.
- 13. The process for the manufacture of a phosphorus-vanadium cometal oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein a cometal is used as a promoter and wherein the total atomic ratio of the cometal to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, wherein the phosphorus-vanadium cometal oxide catalyst is dissolved and the dissolved phosphorus-vanadium cometal oxide catalyst is solidified by evaporation or distillation of the organic solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 14. The process for the manufacture of a phosphorus-vanadium cometal oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein a cometal is used as a promoter and wherein the total atomic ratio of the cometal to vanadium is in the range of about 0.001:1 to about 0.4:1 and wherein the cometal is selected from the group consisting of zinc, molybdenum, niobium, tungsten, uranium, cobalt and tin suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and an alkyl ester of orthophosphoric acid at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 15. The process of claim 14 wherein the vanadium compound is vanadium pentoxide.
- 16. The process of claim 15 wherein the ether is tetrahydrofuran.
- 17. The process of claim 14 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P.dbd.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.
- 18. The process of claim 17 wherein the alkyl ester is triethylphosphate.
- 19. The process of claim 17 wherein the alkyl ester is trimethylphosphate.
- 20. A process for the manufacture of a phosphorus-vanadium-molybdenum oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________ the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 21. A process for the manufacture of a phosphorus-vanadium-moylbdenum oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- and wherein the cometal is molybdenum and the total atomic ratio of molybdenum to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, wherein the phosphorus-vanadium-molybdenum oxide catalyst is dissolved and the dissolved phosphorus-vanadium-molybdenum oxide catalyst is solidified by evaporation or distillation of the organic solvent and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 22. A process for the manufacture of a phosphorus-vanadium-molybdenum oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with an alkyl ester of orthophosphoric acid in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and an alkyl ester of orthophosphoric acid at a temperature of about 300.degree. C. to about 500.degree. C.
- 23. The process of claim 22 wherein the alkyl ester of orthophosphoric acid has the following structure:
- (RO).sub.3 P.dbd.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 is triethylphosphate.
- 25. The process of claim 23 wherein the alkyl ester is trimethylphosphate.
- 26. A process for the manufacture of a phosphorus-vanadium-molybdenum oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- and wherein the cometal is molybdenum and the total atomic ratio of molybdenum to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane, another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent and activating the catalyst at a temperature of about 300.degree. C. to about 500.degree. C. by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream and a phosphorus compound selected from the group consisting of: ##STR4## wherein R is a phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
- 27. A process for the manufacture of a phosphorus-vanadium-zinc oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein the total atomic ratio of zinc to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane, or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor gas stream.
- 28. The process of claim 27 wherein the vanadium compound is vanadium pentoxide.
- 29. A process for the manufacture of a phosphorus-vanadium-zinc oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein the total atomic ratio of zinc to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane or another C.sub.4 hydrocarbon feedstock which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, wherein the phosphorus-vanadium-zinc oxide catalyst is dissolved and the dissolved phosphorus-vanadium-zinc oxide catalyst is solidified by evaporation or distillation of the organic solvent and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock and water, and a phosphorus compound at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 30. The process of claim 29 wherein the ether is tetrahydrofuran.
- 31. A process for the manufacture of a phosphorus-vanadium-zinc catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein the total atomic ratio of zinc to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst by the addition of butane, or another C.sub.4 hydrocarbon feedstock, and an alkyl ester of orthophosphoric acid at a temperature of about 300.degree. C. to about 500.degree. C. wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream.
- 32. The process of claim 31 wherein the alkyl ester or orthophosphoric acid has the following structure:
- (RO).sub.3 P.dbd.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.
- 33. The process of claim 31 wherein the alkyl ester is triethylphosphate.
- 34. The process of claim 31 wherein the alkyl ester is trimethylphosphate.
- 35. A process for the manufacture of a phosphorus-vanadium-zinc oxide catalyst which comprises a phosphorus-vanadium mixed oxide, the atomic ratio of vanadium to phosphorus being in the range of 0.5:1 to 1.25:1 wherein the catalyst has a characteristic powder X-ray diffraction pattern using copper K alpha radiation, as follows,
- ______________________________________ Line Position Relatived, angstrom 2.theta. degrees Intensity______________________________________5.71 15.52 374.80 18.46 84.52 19.64 243.67 24.21 183.29 27.06 253.11 28.67 122.94 30.41 1002.79 32.00 122.65 33.81 72.61 34.28 72.40 37.39 12______________________________________
- wherein the total atomic ratio of zinc to vanadium is in the range of about 0.001:1 to about 0.4:1 and is suitable for use in the manufacture of maleic anhydride from butane which process comprises reacting at a temperature of about 0.degree. C. to about 200.degree. C. a vanadium compound in an organic ether solvent having about 2 to about 10 carbon atoms with a phosphoryl chloride in the presence of water or an aliphatic alcohol having from about 1 to about 8 carbon atoms, eliminating the solvent, and activating the catalyst at a temperature of about 300.degree. C. to about 500.degree. C. by the addition of butane or another hydrocarbon feedstock and water wherein the amount of water added is about 1,000 parts per million to about 40,000 parts per million by weight of the reactor feed gas stream and a phosphorus compound selected from the group consisting of: ##STR5## wherein R is a phenyl or an alkyl radical of 1 to 6 carbon atoms and X is H or R.
BACKGROUND OF THE INVENTION
This is a continuation-in-part application of Ser. No. 729,469 filed on May 1, 1985, now U.S. Pat. No. 4,652,543 which in turn is a continuation-in-part application of Ser. No. 537,983 filed Sept. 30, 1983, now U.S. Pat. No. 4,515,904.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1071647 |
Feb 1980 |
CAX |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
729469 |
May 1985 |
|
Parent |
537983 |
Sep 1983 |
|