Claims
- 1. A gelled anode mixture comprising a metal alloy powder, a gelling agent, an alkaline electrolyte having a hydroxide concentration less than 40%, and at least one amphoteric surfactant.
- 2. A gelled anode mixture as claimed in claim 1 wherein the amphoteric surfactant has a formula of Compound I.
- 3. A gelled anode mixture as claimed in claim 2 further comprising an amphoteric surfactant having a formula of Compound II.
- 4. A gelled anode mixture as claimed in claim 1 further comprising a surfactant having a general formula Y SOx−.
- 5. A gelled anode mixture as claimed in claim 4 wherein Y is selected from the group consisting of an alkyl group, an aryl group, an alkylaryl group, a carboxy acid group, and a salt of any of the foregoing.
- 6. A gelled anode mixture as claimed in claim 4 wherein the Y SOx− surfactant is a salt of a sulfated octadecanoic acid.
- 7. A gelled anode mixture as claimed in claim 4 wherein the Y SOx− surfactant is a sodium salt of sulfated oleic acid.
- 8. A gelled anode mixture as claimed in claim 4 wherein the Y SOx− surfactant is selected from the group consisting of Witconate™ 1840X, Dyasulf 2031, Dymosol 2031, Freedom SOA-70, and Freedom SOA-70WV.
- 9. A gelled anode mixture as claimed in claim 1 further comprising an organic phosphate ester surfactant.
- 10. A gelled anode mixture as claimed in claim 9 wherein the organic phosphate ester surfactant is an ethylene oxide-adduct type organic phosphate ester.
- 11. A gelled anode mixture as claimed in claim 9 wherein the organic phosphate ester surfactant is RM-510.
- 12. A gelled anode mixture as claimed in claim 9 further comprising a surfactant having a general formula Y SOx−.
- 13. A gelled anode mixture as claimed in claim 12 wherein Y is selected from the group consisting of an alkyl group, an aryl group, an alkylaryl group, a carboxy acid group, and a salt of any of the foregoing.
- 14. A gelled anode mixture comprising a metal alloy powder, a gelling agent, an alkaline electrolyte having a hydroxide concentration less than 40%, wherein the metal alloy powder comprises zinc particles, at least 70% of the particles having a particle size within a 100 micron size range distribution, the distribution having a mode between about 100 and about 300 microns.
- 15. A gelled anode mixture as claimed in claim 14 wherein the mode of the particle size distribution is about 100 microns.
- 16. A gelled anode mixture as claimed in claim 14 wherein the mode of the particle size distribution is about 150 microns.
- 17. A gelled anode mixture as claimed in claim 14 wherein the mode of the particle size distribution is about 250 microns.
- 18. A gelled anode mixture as claimed in claim 14, wherein the electrolyte has an hydroxide concentration no higher than about 34%.
- 19. A gelled anode mixture as claimed in claim 14, wherein the electrolyte has an hydroxide concentration no higher than about 30%.
- 20. A gelled anode mixture as claimed in claim 14, wherein the electrolyte has an hydroxide concentration no higher than about 28%.
- 21. A gelled anode mixture as claimed in claim 1, wherein the electrolyte comprises KOH.
- 22. An alkaline electrochemical cell comprising:
a positive current collector; a cathode in contact with the positive current collector; a gelled anode comprising a metal alloy powder, a gelling agent, an alkaline electrolyte having a hydroxide concentration less than 40%, and at least one amphoteric surfactant; a separator between the cathode and the anode; and a negative current collector in electrical contact with the anode.
- 23. A alkaline electrochemical cell as claimed in claim 22 wherein the amphoteric surfactant has a formula of Compound I.
- 24. A alkaline electrochemical cell as claimed in claim 23 further comprising an amphoteric surfactant having a formula of Compound II.
- 25. A alkaline electrochemical cell as claimed in claim 22 further comprising a surfactant having a general formula Y SOx−.
- 26. A alkaline electrochemical cell as claimed in claim 25 wherein Y is selected from the group consisting of an alkyl group, an aryl group, an alkylaryl group, a carboxy acid group, and a salt of any of the foregoing.
- 27. A alkaline electrochemical cell as claimed in claim 25 wherein the Y SOx− surfactant is a salt of a sulfated octadecanoic acid.
- 28. A alkaline electrochemical cell as claimed in claim 25 wherein the Y SOx− surfactant is a sodium salt of sulfated oleic acid.
- 29. A alkaline electrochemical cell as claimed in claim 22 wherein the Y SOx− surfactant is selected from the group consisting of Witconate™ 1840X, Dyasulf 2031, Dymosol 2031, Freedom SOA-70, and Freedom SOA-70WV.
- 30. A alkaline electrochemical cell as claimed in claim 22 further comprising an organic phosphate ester surfactant.
- 31. A alkaline electrochemical cell as claimed in claim 30 wherein the organic phosphate ester surfactant is an ethylene oxide-adduct type organic phosphate ester.
- 32. A alkaline electrochemical cell as claimed in claim 30 wherein the organic phosphate ester surfactant is RM-510.
- 33. A alkaline electrochemical cell as claimed in claim 30 further comprising a surfactant having a general formula Y SOx−.
- 34. A alkaline electrochemical cell as claimed in claim 33 wherein Y is selected from the group consisting of an alkyl group, an aryl group, an alkylaryl group, a carboxy acid group, and a salt of any of the foregoing.
- 35. An alkaline electrochemical cell comprising:
a positive current collector; a cathode in contact with the positive current collector; a gelled anode comprising a metal alloy powder, a gelling agent, an alkaline electrolyte having a hydroxide concentration less than 40%, wherein the metal alloy powder comprises zinc particles, at least 70% of the particles having a particle size within a 100 micron size range distribution, the distribution having a mode between about 100 and about 300 microns; a separator between the cathode and the anode; and a negative current collector in electrical contact with the anode.
- 36. A alkaline electrochemical cell as claimed in claim 35 wherein the mode of the particle size distribution is about 100 microns.
- 37. A alkaline electrochemical cell as claimed in claim 35 wherein the mode of the particle size distribution is about 200 microns.
- 38. A alkaline electrochemical cell as claimed in claim 35 wherein the mode of the particle size distribution is about 300 microns.
- 39. A alkaline electrochemical cell as claimed in claim 35, wherein the electrolyte has an hydroxide concentration no higher than about 34%.
- 40. A alkaline electrochemical cell as claimed in claim 35, wherein the electrolyte has an hydroxide concentration no higher than about 30%.
- 41. A alkaline electrochemical cell as claimed in claim 35, wherein the electrolyte has an hydroxide concentration no higher than about 28%.
- 42. A alkaline electrochemical cell as claimed in claim 35, wherein the electrolyte comprises KOH.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. Ser. No. 10/375,381, filed Feb. 27, 2003, which is a continuation-in-part of U.S. Ser. No. 10/090,137, filed Feb. 27, 2002, both of which are entitled “Alkaline Cell with Gassing Inhibitors”, the disclosures of which are hereby incorporated by reference as if set forth in their entirety herein.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
10375381 |
Feb 2003 |
US |
Child |
10648134 |
Aug 2003 |
US |
Parent |
10090137 |
Feb 2002 |
US |
Child |
10375381 |
Feb 2003 |
US |