Claims
- 1.A process for the preparation of a fluid rare earth phosphate catalyst composition comprising:
- 2.The process of claim 1 wherein the molar ratio of rare earth to phosphoric acid is in the range of 0.9:1 to 1.1:1.
- 3.The process of claim 1 wherein the phosphoric acid is a phosphoric acid solution in a concentration in the range of 50 weight percent to 85 weight percent in water.
- 4.The process of claim 1 wherein the rare earth salt comprises a lanthanum salt.
- 5.The process of claim 4 wherein the lanthanum salt is selected from the group consisting of halides, nitrates, and carboxylates.
- 6.The process of claim 5 wherein the phosphoric acid is a phosphoric acid solution in a concentration in the range of 50 weight percent to 85 weight percent in water.
- 7.The process of claim 1 further comprising adding a base that does not contain a Group 1 or Group 2 of the elements of the periodic table in an amount effective to adjust the pH of the composition to a pH in the range of 5 to 8.
- 8.The process of claim 7 wherein the base is ammonium hydroxide.
- 9.The process of claim 1 wherein the active hydrogen containing compound is a C9-C30 primary mono-hydric alkanol or alkylphenol.
- 10.The process of claim 9 wherein the active hydrogen containing compound is a C9-C30 primary mono-hydric alkanol.
- 11.The process of claim 10 wherein the active hydrogen containing compound is a mixture of C9 and C20 alkanols.
- 12.A process for the preparation of alkylene oxide adducts of active hydrogen containing organic compounds, which comprises contacting an alkylene oxide reactant comprising one or more vicinal alkylene oxides with an active hydrogen containing reactant comprising one or more active hydrogen containing organic compounds, in the presence of a catalytically effective amount of the fluid catalyst prepared by the process of claim 1.
- 13.The process of claim 12 wherein the alkylene oxide reactant consists essentially of one or more alkylene oxides selected from the group consisting of ethylene oxide and propylene oxide, and mixtures thereof.
- 14.The process of claim 13 wherein the alkylene oxide reactant is ethylene oxide.
- 15.The process of claim 14 wherein the alkylene oxide reactant is propylene oxide.
- 16.The process of claim 13 wherein the active hydrogen containing reactant consists essentially of one or more compounds selected from the group consisting of alcohols, phenols and polyols, wherein the active hydrogen moiety is attached to a primary carbon atom.
- 17.The process of claim 16 wherein the active hydrogen containing reactant consists essentially of one or more active hydrogen containing compounds selected from the group consisting of alkanols having from 9 to about 30 carbon atoms and alkyl-substituted phenols wherein each alkyl substituent has from 3 to about 30 carbon atoms.
- 18.The process of claim 17 wherein the active hydrogen containing reactant consists essentially of one or more C9-C30 primary mono-hydric alkanols.
- 19.The process of claim 12 wherein the active hydrogen containing reactant consists essentially of primary mono-hydric alkanols having carbon numbers in the range from 9 to 24, inclusive, and the alkylene oxide reactant consists essentially of ethylene oxide.
- 20.The process of claim 19 wherein the active hydrogen containing reactant consists essentially of primary mono-hydric alkanols having carbon numbers in the range from 9 to 20, inclusive.
- 21.The process of claim 20 wherein greater than about 50% of the molecules of the primary mono-hydric alkanols are of linear carbon structure.
- 22.The process of claim 21 wherein greater than about 70% of the molecules are of linear carbon structure.
- 23.The process of claim 20 wherein greater than about 50% of the molecules of the primary mono-hydric alkanols are of the branched carbon structure.
- 24.A process for the preparation of alkylene oxide adducts of primary monohydric alkanols, which comprises contacting an alkylene oxide reactant comprising one or more vicinal alkylene oxides and having 2 to 4 carbon atoms with one or more primary monohydric alkanols, in the presence of a catalytically effective amount of the fluid catalyst prepared by the process of claim 10.
- 25.The process of claim 24 wherein one primary monohydric alkanol is a mixture of C9 and C20 alkanols.
- 26. A process for the preparation of alkylene oxide adducts of primary monohydric alkanols, which comprises:
- 27.The process of claim 26 wherein the primary monohydric alkanol is a mixture of C9 and C20 alkanols.
- 28. The process of claim 26 wherein the rare earth salt comprises a lanthanum salt.
- 29. A process for the preparation of alkylene oxide adducts of active hydrogen containing organic compounds, which comprises contacting an alkylene oxide reactant comprising one or more vicinal alkylene oxides with an active hydrogen containing reactant comprising one or more active hydrogen containing organic compounds, in the presence of a catalytically effective amount of the fluid rare earth phosphate catalyst prepared by the process comprising:
- 30. The process of claim 29 wherein the molar ratio of rare earth to phosphoric acid is in the range of 0.9:1 to1.1:1.
- 31. The process of claim 29 wherein the alkylene oxide reactant comprise ethylene oxide.
- 32. The process of claim 29 wherein the active hydrogen containing reactant is a C9-C30 active hydrogen containing organic compound.
- 33. The process of claim 29 wherein the rare earth salt comprises a lanthanum salt.
- 34. The process of claim 31 wherein the rare earth salt comprises a lanthanum salt.
Field of Invention
[0001] This invention relates to a process of preparing a rare earth catalyst useful in an alkoxylation process.