Claims
- 1. A process of preparing a solution of an enhanced efficacy aluminum antiperspirant salt in a polyhydric alcohol which comprises
- (a) providing an aqueous solution consisting essentially of about 5% to about 20% by weight of an enhanced efficacy aluminum antiperspirant salt in water, said enhanced efficacy aluminum antiperspirant salt having been prepared in situ without having been dried to a solid powder;
- (b) mixing said aqueous solution with a sufficient amount of a liquid polyhydric alcohol to provide a mixed solution which has an antiperspirant salt to polyhydric alcohol weight ratio of about 1:4 to about 1.2:1; and
- (c) rapidly evaporating the water from said mixed solution under vacuum to provide a liquid polyhydric alcohol solution containing about 20 to 50% enhanced efficacy aluminum antiperspirant salt and about 2 to 16% water, with the balance being said polyhydric alcohol.
- 2. The process of claim 1 wherein the enhanced efficacy aluminum antiperspirant salt is a mixture or complex of Al.sub.2 (OH).sub.6-a X.sub.a and ZrO(OH).sub.2-pb Y.sub.b wherein X is Cl, Br, I, or NO.sub.3, a is about 0.3 to about 4, Y is Cl, Br, I, NO.sub.3 or SO.sub.4, b is about 0.8 to about 2, p is the valence of Y, and the Al:Zr ratio is about 1.7 to about 12.5.
- 3. The process of claim 2 wherein the polyhydric alcohol is selected from the group consisting of propylene glycol, butylene glycol, diethylene glycol, dipropylene glycol, glycerin, sorbitol and mixtures thereof.
- 4. The process of claim 3 wherein the enhanced efficacy aluminum antiperspirant salt is aluminum-zirconium chlorohydrate.
- 5. The process of claim 4 wherein the aqueous solution of enhanced efficacy aluminum antiperspirant salt is prepared by heating a 5 to 18% aqueous solution of aluminum chlorohydrate at a sufficient temperature and for a sufficient time to provide an HPLC peak 4 to peak 3 area ratio of at least 0.7 with at least 70% of the aluminum contained in said peaks, then adding zirconyl hydroxychloride to said solution in an amount to provide an Al:Zr ratio of about 2 to about 8.
- 6. The process of claim 5 wherein the enhanced efficacy aluminum antiperspirant salt has an HPLC peak 4 to peak 3 area ratio of 0.9 or more both after step (a) and after step (c).
- 7. The process of claim 1 wherein the enhanced efficacy aluminum antiperspirant salt in step (a) is Al.sub.2 (OH).sub.6-a X.sub.a wherein X is Cl, Br, I, or NO.sub.3, and a is about 0.3 to about 4.
- 8. The process of claim 7 wherein the polyhydric alcohol is selected from the group consisting of propylene glycol, butylene glycol, diethylene glycol, dipropylene glycol, glycerin, sorbitol and mixtures thereof.
- 9. The process of claim 8 wherein the enhanced efficacy aluminum antiperspirant salt is aluminum chlorohydrate.
- 10. The process of claim 8 wherein prior to step (c) an aqueous zirconium salt solution is added in an amount to provide an Al:Zr ratio of about 1.7 to about 12.5 (i) to the mixed solution after the liquid polyhydric alcohol has been mixed with the aqueous solution in accordance with step (b) or (ii) to the liquid polyhydric alcohol before it is mixed with the aqueous solution in accordance with step (b), wherein the zirconium salt has the formula ZrO(OH).sub.2-pb Y.sub.b wherein Y is Cl, Br, I, NO.sub.3, or SO4, b is about 0.8 to 2, and p is the valence of Y.
- 11. The process of claim 10 wherein the enhanced efficacy aluminum antiperspirant salt is aluminum chlorohydrate and the zirconium salt is zirconyl hydroxychloride.
- 12. The process of claim 9 wherein the aqueous solution of enhanced efficacy aluminum antiperspirant salt is prepared by (i) heating a 5 to 18% aqueous solution of aluminum chlorohydrate at a sufficient temperature and for a sufficient time to provide an HPLC peak 4 to peak 3 area ratio of at least 0.7 with at least 70% of the aluminum contained in said peaks or (ii) reacting aluminum metal with aluminum chloride or hydrochloric acid in water at a temperature of about 50.degree. to 100.degree. C., the concentration of the reactants being such as to provide an aqueous solution of aluminum chlorohydrate of about 10 to about 20% by weight with an HPLC peak 4 to peak 3 area ratio of at least 0.7 with at least 70% of the aluminum contained in said peaks.
- 13. The process of claim 12 wherein prior to step (b) the aqueous solution of enhanced efficacy aluminum antiperspirant salt is rapidly concentrated to about 40 to 50% salt concentration, and steps (b) and (c) are carried out sufficiently rapidly thereafter so that the enhanced efficacy aluminum antiperspirant salt retains an HPLC peak 4 to peak 3 area ratio of at least 0.7.
- 14. The process of claim 12 wherein prior to step (c) an aqueous zirconium hydroxychloride solution is added in an amount to provide an Al:Zr ratio of about 2 to about 8 (i) to the mixed solution after the liquid polyhydric alcohol has been mixed with the aqueous aluminum chlorohydrate solution in accordance with step (b) or (ii) to the liquid polyhydric alcohol before it is mixed with the aqueous aluminum chlorohydrate solution in accordance with step (b).
- 15. The process of claim 14 wherein the enhanced efficacy aluminum antiperspirant salt has an HPLC peak 4 to peak 3 area ratio of 0.9 or more both after step (a) and after step (c).
- 16. The process of claim 1, 3, 4, 6, 8, 9, 11, 12 or 15 wherein step (c) is performed at about 5 to about 70 mm Hg (absolute pressure) and about 20.degree. to about 85.degree. C.
- 17. The process of claim 16 wherein step (c) is performed in a continuous manner by continuously adding said mixed solution to the inlet of a vacuum evaporator and withdrawing said polyhydric alcohol solution from the outlet of said vacuum evaporator.
- 18. The process of claim 16 wherein step (c) is performed such that the conversion of an aliquot of mixed solution to polyhydric alcohol solution is completed in less than four hours.
- 19. The process of claim 14 wherein the liquid polyhydric alcohol contains a solubilized alkaline glycinate in an amount sufficient to provide a total Gly:Zr ratio in the recovered product of about 1.3:1 to about 4:1 and said aqueous zirconium hydroxychloride solution is added to said liquid polyhydric alcohol before it is mixed with the aqueous aluminum chlorohydrate solution in accordance with step (b).
- 20. The process of claim 19 wherein said alkaline glycinate is sodium glycinate, potassium glycinate or zinc glycinate.
- 21. A process of preparing a solution of an enhanced efficacy aluminum zirconium antiperspirant salt in a polyhydric alcohol which comprises
- (a) providing a liquid polyhydric alcohol which contains a solubilized alkaline glycinate, the amount of solubilized alkaline glycinate being sufficient to provide a total Gly:Zr ratio of about 1.3:1 to about 4:1 in the recovered product;
- (b) providing a first aqueous solution consisting essentially of about 40% to about 50% by weight zirconium hydroxychloride glycinate in water;
- (c) providing a second aqueous solution consisting essentially of about 5% to about 20% by weight of an enhanced efficacy aluminum chlorohydrate in water, said enhanced efficacy aluminum chlorohydrate having been prepared in situ without having been dried to a solid powder and having an HPLC peak 4 to peak 3 area ratio of at least 0.7 with at least 70% of the aluminum contained in said peaks;
- (d) mixing said first aqueous solution with said liquid polyhydric alcohol to provide a first mixed solution;
- (e) mixing said second aqueous solution with said first mixed solution to provide a second mixed solution;
- wherein the amount of each of the components (a), (b) and (c) is such as to provide a second mixed solution which has an aluminum-zirconium chlorohydrate to polyhydric alcohol weight ratio of about 1:4 to about 1.2:1 and an Al:Zr ratio of about 2 to about 8; and
- (f) rapidly evaporating the water from said second mixed solution under vacuum to provide a liquid polyhydric alcohol solution containing about 20 to 50% enhanced efficacy aluminum-zirconium chlorohydrate glycinate and about 2 to 16% water, with the balance being said polyhydric alcohol, said aluminum-zirconium chlorohydrate glycinate having an HPLC peak 4 to peak 3 area ratio of at least 0.7 with at least 70% of the aluminum contained in said peaks, a total Gly:Zr ratio of about 1.3:1 to about 4:1, and a pH of about 4.1 to about 5.0.
- 22. A process of preparing a solution of an enhanced efficacy aluminum antiperspirant salt in a polyhydric alcohol which comprises
- (a) providing an aqueous solution of an enhanced efficacy aluminum antiperspirant salt, said enhanced efficacy aluminum antiperspirant salt having been prepared in situ without having been dried to a solid powder;
- (b) mixing said aqueous solution with a liquid polyhydric alcohol to provide a mixed solution, the amount of said polyhydric alcohol being sufficient to provide, after the evaporation step (c), the desired concentration of the antiperspirant salt in the polyhydric alcohol solution which is recovered; and
- (c) rapidly evaporating the water from said mixed solution under vacuum to provide a liquid polyhydric alcohol solution containing about 20 to 50% enhanced efficacy aluminum antiperspirant salt and about 2 to 16% water, with the balance being said polyhydric alcohol.
- 23. The process of claim 22 wherein step (c) is performed such that the conversion of a given aliquot of mixed solution to polyhydric alcohol solution is completed in less than four hours.
- 24. The process of claim 23 wherein step (c) is performed at about 5 to about 70 mm Hg (absolute pressure) and about 20.degree. to about 85.degree. C.
- 25. The process of claim 24 wherein step (c) is performed in a continuous manner by continuously adding said mixed solution to the inlet of a vacuum evaporator and withdrawing said polyhydric alcohol solution from the outlet of said vacuum evaporator.
- 26. The process of claim 25 wherein wherein the average residence time of antiperspirant salt in the evaporator is about three hours or less.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 08/333,896 filed on Nov. 2, 1994, abandoned.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
7191 |
Jan 1980 |
EPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
333896 |
Nov 1994 |
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