Claims
- 1. A metal-air fuel cell battery (FCB) system for generating electrical power, comprising:
a plurality of movable cathode structures, each mounted within a housing to enable movement about a closed path; a supply of metal-fuel tape transportable relative to said movable cathode structures, along a predetermined tape path extending within said housing; an ionically-conducing medium disposed between said plurality of movable cathodes and said metal-fuel tape during system operation, for contacting each said movable cathode structure and said metal-fuel tape being transported thereover, and supporting ionic conduction between said movable cathode structure and said metal-fuel tape during system operation; and a transport mechanism for transporting said plurality of movable cathode structures, said metal-fuel tape and said ionically-conductive medium relative to said housing.
- 2. The metal-air fuel cell battery system of claim 1, wherein each said movable cathode structure is cylindrically shaped and has a hollow center permitting air flow therethrough.
- 3. The metal-air fuel cell battery system of claim 2, wherein said ionically-conductive medium is a film integrated with each said movable cathode structure.
- 4. The metal-air fuel cell battery system of claim 2, wherein said ionically-conductive medium is a film integrated with said metal-fuel tape.
- 5. The metal-air fuel cell battery system of claim 2, wherein said ionically-conductive medium is an ionically-conductive belt structure transported between each said movable cathode structure and at least a portion of said metal-fuel tape.
- 6. The metal-air fuel cell battery system of claim 3, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure within said housing; and second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape during system operation.
- 7. The metal-air fuel cell battery system of claim 6, wherein said first means comprises one or more electric motors for rotating each said movable cathode structure, and said second means comprises one or more electric motors for transporting said metal-fuel tape relative to said each movable cathode structure.
- 8. The metal-air fuel cell battery system of claim 4, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to said moving cathode structure; and second means for moving said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape during system operation.
- 9. The metal-air fuel cell battery system of claim 5, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure; second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal-fuel tape during system operation; and third means for transporting said ionically-conductive belt structure between each said movable cathode structure and said metal-fuel tape during system operation, at substantially the same velocity as said metal-fuel tape during system operation.
- 10. The metal-air fuel cell battery system of claim 2, wherein said transport mechanism comprises a common belt structure for transporting each said movable cathode structure and said metal-fuel tape relative to each other at substantially the same velocity at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape.
- 11. The metal-air fuel cell battery system of claim 5, wherein said transport mechanism comprises a common belt structure for transporting said movable cathode structure, said ionically-conducing belt structure and said metal-fuel tape relative to each other at substantially the same velocity at the locus of points at which said ionically-conductive medium contacts each said movable cathode structure and said metal-fuel tape.
- 12. The metal-air fuel cell battery system of claim 1, wherein each said movable cathode structure is a cathode belt structure.
- 13. The metal-air fuel cell battery system of claim 12, wherein said ionically-conductive medium is a film integrated with each said cathode belt structure.
- 14. The metal-air fuel cell battery system of claim 12, wherein said ionically-conductive medium is a film integrated with said metal-fuel tape.
- 15. The metal-air fuel cell battery system of claim 12, wherein said ionically-conductive medium is a belt structure disposed between at least a portion of each said cathode belt structure and said metal-fuel tape.
- 16. The metal-air fuel cell battery system of claim 13, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure; and second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape at the locus of points at which said ionically-conductive medium contacts each said movable cathode structure and said metal-fuel tape during system operation.
- 17. The metal-air fuel cell battery system of claim 16, wherein said first means comprises one or more electric motors for rotating each said movable cathode structure, and said second means comprises one or more electric motors for transporting said metal-fuel tape relative to each said movable cathode structure.
- 18. The metal-air fuel cell battery system of claim 14, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure; and second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape at the locus of points at which said ionically-conductive medium contacts each said movable cathode structure and said metal-fuel tape during system operation.
- 19. The metal-air fuel cell battery system of claim 18, wherein said first means comprises one or more electric motors for rotating each said movable cathode structure, and said second means comprises one or more electric motors for transporting said metal-fuel tape relative to each said movable cathode structure.
- 20. The metal-air fuel cell battery system of claim 15, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure; second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape during system operation; and third means for transporting said ionically-conductive belt structure between each said movable cathode structure and said metal-fuel tape during system operation, at substantially the same velocity as said metal-fuel tape at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape during system operation.
- 21. The metal-air fuel cell battery system of claim 20, wherein said first means comprises one or more electric motors for rotating each said movable cathode structure, and said second means comprises one or more electric motors for transporting said metal-fuel tape relative to each said moving cathode structure.
- 22. The metal-air fuel cell battery system of claim 12, wherein said transport mechanism comprises a common belt structure for transporting said cathode belt structure and said metal-fuel tape.
- 23. The metal-air fuel cell battery system of claim 1, wherein said ionically-conductive medium is an ionically-conductive belt structure transported between each said movable cathode structure and at least a portion of said metal-fuel tape.
- 24. The metal-air fuel cell battery system of claim 23, wherein said transport mechanism comprises:
first means for transporting said supply of metal-fuel tape relative to each said movable cathode structure; second means for moving each said movable cathode structure relative to and at substantially the same velocity as said metal fuel tape at the locus of points at which said ionically-conductive medium contacts each said movable cathode structure and said metal-fuel tape during system operation; and third means for transporting said ionically-conductive belt structure between each said movable cathode structure and said metal-fuel tape during system operation, at substantially the same velocity said metal-fuel tape at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape during system operation.
- 25. The metal-air fuel cell battery system of claim 24, wherein said first means comprises one or more electric motors for rotating each said movable cathode structure, and said second means comprises one or more electric motors for transporting said metal-fuel tape relative to each said movable cathode structure.
- 26. The metal-air fuel cell battery system of claim 23, wherein said transport mechanism comprises a common belt structure for transporting each said movable cathode structure, said ionically-conductive belt structure and said metal-fuel tape relative to each other at substantially the same velocity at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape.
- 27. A method of producing electrical power from a metal-air fuel cell battery (FCB) system having a housing, a plurality of movable cathode structures, a supply of an ionically-conducing medium, and an source of ionically-conductive medium for supporting ion transport between each said movable cathode structure and said metal-fuel tape during system operation, said method comprising the steps of:
(a) arranging said plurality of moving cathode structures and said supply of metal-fuel tape within said housing so that said ionically-conducing medium is disposed in physical contact with each said movable cathode structure and said metal-fuel tape; and (b) moving each said movable cathode structure, said metal-fuel tape and said ionically-conductive medium relative to said housing during operation of said system.
- 28. The method of claim 27, where during step (b), said each movable cathode structure is moved at substantially the same velocity at the locus of points at which said ionically-conductive medium contacts said movable cathode structure and said metal-fuel tape.
- 29. The method of claim 27, wherein each said movable cathode structure is cylindrically shaped and has a hollow center permitting air flow therethrough.
- 30. The method of claim 27, wherein each said movable cathode structure is a cathode belt structure.
- 31. The method of claim 27, wherein said ionically-conductive medium is a film integrated with said metal-fuel tape.
- 32. The method of claim 27, wherein said ionically-conductive medium is a film integrated with each said movable cathode structure.
- 33. The method of claim 27, wherein said ionically-conductive medium is an ionically-conductive belt structure disposed between at least a portion of said movable cathode structure and said metal-fuel tape.
- 34. The method of claim 27, wherein step (b) comprises using one or more electric motors to move each said movable cathode structure and said metal-fuel tape.
- 35. The method of claim 27, wherein step (b) comprises using a common belt structure to move each said cathode belt structure and said metal-fuel tape.
- 36. A metal-air fuel cell battery (FCB) system for generating electrical power, comprising:
a plurality of movable cathode structures, each mounted within a housing to enable movement about a closed path; a supply of metal-fuel tape transportable relative to said movable cathode structures, along a predetermined tape path extending within said housing; and an ionically-conducing medium disposed between said plurality of movable cathodes and said metal-fuel tape during system operation, for contacting each said movable cathode structure and said metal-fuel tape being transported thereover, and supporting ionic conduction between said movable cathode structure and said metal-fuel tape during system operation.
- 37. The metal-air fuel cell battery (FCB) system of claim 36, which further comprises
a transport mechanism for transporting said plurality of movable cathode structures, said metal-fuel tape and said ionically-conductive medium relative to said housing.
- 38. A metal-air fuel cell battery system for generating electrical power, comprising:
a plurality of movable cathode structures mounted within a housing; and a supply of metal-fuel tape transportable relative to said plurality of movable cathode structures during operation of said system, wherein each said movable cathode structure has an ionically-conductive coating on the outer surface thereof, disposed between said movable cathode structure and said metal-fuel tape, for contacting said movable cathode structure and said metal-fuel tape and supporting ionic conduction therebetween during operation of said system.
- 39. The metal-air fuel cell battery system of claim 38, which further comprises
a transport mechanism for transporting said metal-fuel tape relative to said plurality of movable cathode structures during operation of said system.
- 40. A metal-air fuel cell battery system for generating electrical power, comprising:
a plurality of cathode structures mounted within a housing; a supply of metal-fuel tape transportable relative to said plurality of cathode structures during operation of said system; and an ionically-conductive belt disposed between each said cathode structure and said metal-fuel tape, for contacting each said cathode structure and said metal-fuel tape and supporting ionic conduction therebetween during operation of said system.
- 41. The metal-air fuel cell battery system of claim 40, which further comprises
a transport mechanism for transporting said ionically-conductive belt relative to said metal-fuel tape and said plurality of cathode structures during operation of said system.
RELATED CASES
[0001] This is a Continuation-in-Part of: copending application Ser. No. 09/074,337 entitled “Metal-Air Fuel-Cell Battery Systems” filed May 7, 1998; and copending application Ser. No. 08/944,507 entitled “High-Power Density Metal-Air Fuel Cell Battery System” by Sadeg Faris, et al. filed Oct. 6, 1997, said application being assigned to Reveo, Inc. and incorporated herein by reference in its entirely.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09110761 |
Jul 1998 |
US |
Child |
09133166 |
Aug 1998 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09074337 |
May 1998 |
US |
Child |
09110761 |
Jul 1998 |
US |
Parent |
08944507 |
Oct 1997 |
US |
Child |
09074337 |
May 1998 |
US |