Claims
- 1. A battery element useful as a recombinant separator in a valve regulated lead acid battery having active material and sulfuric acid electrolyte comprising a recombinant separator and an additive amount of one or more acid resistant porous organic polymers having a plurality of functional groups on the internal surfaces of the porous particles, which functional groups associate with the electrolyte to control oxygen diffusion through the separator at the varying sulfuric acid molarity conditions of the battery provided that said one or more organic porous polymers are associated with said separator and in contact with the electrolyte to allow said electrolyte to substantially permeate the internal surfaces of the porous polymer.
- 2. The element of claim 1 wherein the organic polymer has weak acid functionality.
- 3. The element of claim 2 wherein the functionality is carboxylic.
- 4. The element of claim 1 wherein the organic polymer has anion functionality.
- 5. The element of claim 4 wherein the anion functionality is weak anion.
- 6. The element of claim 1 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 7. The element of claim 3 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 8. The element of claim 5 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 9. The element of claim 1 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 10. The element of claim 3 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 11. The element of claim 7 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 12. The element of claim 1 wherein the porous organic polymers have microporosity.
- 13. The element of claim 3 wherein the porous organic polymers have microporosity.
- 14. The element of claim 7 wherein the porous organic polymers have microporosity.
- 15. A battery element useful as a fiber mat recombinant separator in a valve regulated lead acid battery having active material and sulfuric acid electrolyte comprising a recombinant separator and an additive amount of one or more acid resistant porous organic polymers having a plurality of functional groups on the internal surfaces of the porous particles, which functional groups associate with the electrolyte to control oxygen diffusion through the separator at the varying sulfuric acid molarity conditions of the battery provided that said one or more organic porous polymers are associated with said separator and in contact with the electrolyte to allow said electrolyte to substantially permeate the internal surfaces of the porous polymer.
- 16. The element of claim 15 wherein the fiber in the fiber mat is selected from the group consisting of glass, organic polymer and mixtures thereof.
- 17. The element of claim 16 wherein the fibers are predominantly microfine fibers.
- 18. The element of claim 15 wherein the organic polymer has weak acid functionality.
- 19. The element of claim 18 wherein the functionality is carboxylic.
- 20. The element of claim 15 wherein the organic polymer has anion functionality.
- 21. The element of claim 20 wherein the anion functionality is weak anion.
- 22. The element of claim 15 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 23. The element of claim 19 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 24. The element of claim 21 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 25. The element of claim 15 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 26. The element of claim 19 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 27. The element of claim 21 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 28. The element of claim 15 wherein the porous organic polymers have microporosity.
- 29. The element of claim 19 wherein the porous organic polymers have microporosity.
- 30. The element of claim 27 wherein the porous organic polymers have microporosity.
- 31. A battery element useful as a fiber mat recombinant separator in a valve regulated lead acid battery having active material and sulfuric acid electrolyte comprising a recombinant separator and an additive amount of one or more acid resistant porous organic polymers having a plurality of functional groups on the internal surfaces of the porous particles, which functional groups associate with the sulfuric acid electrolyte to change the particle size and particle pore size and control oxygen diffusion through the separator at the varying sulfuric acid molarity conditions of the battery provided that said one or more organic porous polymers are associated with said separator and in contact with the electrolyte to allow said electrolyte to substantially permeate the internal surfaces of the porous polymer.
- 32. The element of claim 31 wherein the organic polymer has weak acid functionality.
- 33. The element of claim 32 wherein the functionality is carboxylic.
- 34. The element of claim 31 wherein the organic polymer has anion functionality.
- 35. The element of claim 34 wherein the anion functionality is weak anion.
- 36. The element of claim 31 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 37. The element of claim 33 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 38. The element of claim 35 wherein the organic polymer is a cross-linked polystyrene and the cross-linking is by divinylbenzene.
- 39. The element of claim 31 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 40. The element of claim 33 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 41. The element of claim 35 wherein the organic polymer is a cross-linked polymer and the cross-linking is less than about 6%.
- 42. The element of claim 31 wherein the porous organic polymers have microporosity.
- 43. The element of claim 33 wherein the porous organic polymers have microporosity.
- 44. The element of claim 37 wherein the porous organic polymers have microporosity.
RELATED APPLICATIONS
[0001] This application is a division application of application Ser. No. 09/045,725, filed Mar. 20, 1998. This earlier filed application is incorporated in its entirety herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09045725 |
Mar 1998 |
US |
Child |
09781479 |
Feb 2001 |
US |