Claims
- 1. A fuel cell for the generation of electrical power, comprising
a) an anode; b) a cathode; and c) a liquid fuel composition including a primary fuel and an auxiliary fuel wherein said primary fuel includes at least one surface active compound and wherein said auxiliary fuel includes at least one compound with a standard reduction potential more negative than the reduction potential of hydrogen gas.
- 2. The fuel cell of claim 1 wherein at least one of said at least one surface-active compounds is a compound with an —OH functional group.
- 3. The fuel cell of claim 1 wherein said primary fuel includes at least one compound from the group consisting of CH4O, C2H6O, C3H8O, C4H10O, C5H12O, C6H14O, ethylene glycol and glycerine.
- 4. The fuel cell of claim 1 wherein said fuel composition further includes at least one additional compound.
- 5. The fuel cell of claim 1 wherein said auxiliary fuel includes at least one compound from the group consisting of hydrides, formates, thiosulfates, sulfites, phosphates and hypophosphites.
- 6. The fuel cell of claim 5 wherein said auxiliary fuel includes at least one compound from the group consisting of LiAlH4, NaBH4, LiBH4, (CH3)3NHBH3, NaAlH4, NaCNBH3, CaH2, LiH, NaH, KH, Na2S2O3, Na2SO3, Na2HPO3, Na2HPO2, K2S2O3, K2SO3, K2HPO3, K2HPO2, NaCOOH and KCOOH.
- 7. The fuel cell of claim 1 wherein said liquid fuel composition further includes an electrolyte and has a pH above about 7.
- 8. The fuel cell of claim 7 wherein said pH is above about 8.
- 9. The fuel cell of claim 7 wherein said electrolyte is substantially an aqueous solution of an alkali metal hydroxide.
- 10. The fuel cell of claim 9 wherein said electrolyte has a concentration of alkali metal hydroxide between about 3 M and about 12 M.
- 11. A method for generating electricity comprising:
a) providing a fuel cell that includes a cathode and an anode; b) providing a fuel composition including a primary fuel and an auxiliary fuel wherein said primary fuel includes at least one surface active compound and wherein said auxiliary fuel includes at least one compound with a standard reduction potential more negative than the reduction potential of hydrogen gas; c) providing a circuit connecting said cathode and said anode; and d) contacting said fuel composition with said anode to oxidize said fuel composition.
- 12. The method of claim 11 wherein at least one of said at least one surface-active compounds is a compound with an —OH functional group.
- 13. The method of claim 11 wherein said primary fuel includes at least one compound from the group consisting of CH4O, C2H6O, C3H8O, C4H10O, C5H12O, C6H14O, ethylene glycol and glycerine.
- 14. The method of claim 11 wherein said fuel composition further includes at least one additional compound.
- 15. The method of claim 11 wherein said auxiliary fuel includes at least one compound from the group consisting of hydrides, formates thiosulfates , sulfites, phosphates and hypophosphites.
- 16. The method of claim 15 wherein said auxiliary fuel includes at least one compound from the group consisting of LiAlH4, NaBH4, LiBH4, (CH3)3NHBH3, NaAlH4, NaCNBH3, CaH2, LiH, NaH, KH, Na2S2O3, Na2SO3, Na2HPO3, Na2HPO2, K2S2O3, K2SO3, K2HPO3, K2HPO2, NaCOOH and KCOOH.
- 17. The method of claim 11 wherein said liquid fuel composition further includes an electrolyte and has a pH above about 7.
- 18. The method of claim 17 wherein said pH is above about 8.
- 19. The method of claim 17 wherein said electrolyte is substantially an aqueous solution of an alkali metal hydroxide.
- 20. The method of claim 19 wherein said electrolyte has a concentration of alkali metal hydroxide between about 3 M and about 12 M.
- 21. A liquid fuel composition for use in an electrochemical fuel cell, comprising
a) a primary fuel including at least one surface-active compound; and b) an auxiliary fuel including at least one compound with a standard reduction potential more negative than the reduction potential of hydrogen gas.
- 22. The fuel composition of claim 21 wherein said surface-active compound is a compound with an —OH functional group.
- 23. The fuel composition of claim 21 wherein said surface-active compound includes at least one compound from the group consisting of CH4O, C2H6O, C3H8O, C4H10O, C5H12O, C6H14O, ethylene glycol and glycerine.
- 24. The fuel composition of claim 21 further comprising at least one additional compound.
- 25. The fuel composition of claim 21 wherein said auxiliary fuel includes at least one compound from the group consisting of hydrides, formates, thiosulfates, sulfites, phosphates and hypophosphites.
- 26. The fuel composition of claim 25 wherein said auxiliary fuel includes at least one compound from the group consisting of LiAlH4, NaBH4, LiBH4, (CH3)3NHBH3, NaAlH4, NaCNBH3, CaH2, LiH,. NaH, KH, Na2S2O3, Na2SO3, Na2HPO3, Na2HPO2, K2S2O3, K2SO3, K2HPO3, K2HPO2, NaCOOH and KCOOH.
- 27. The fuel composition of claim 21 further comprising an electrolyte with a pH above about 7.
- 28. The fuel composition of claim 27 wherein said pH is above about 8.
- 29. The fuel composition of claim 27 wherein said electrolyte is substantially an aqueous solution of an alkali metal hydroxide.
- 30. The fuel composition of claim 29 wherein said alkali metal hydroxide is KOH.
- 31. The fuel composition of claim 26 wherein said electrolyte has a concentration of KOH between about 3 M and about 12 M.
- 32. The fuel composition of claim 30 wherein said concentration is substantially 6 M.
- 33. The fuel composition of claim 27 comprising between 2 weight percent and 60 weight percent of said primary fuel and between 1 weight percent and saturation of said auxiliary fuel.
Parent Case Info
[0001] This is a continuation in part of U.S. patent application Ser. No. 09/752,551 filed on Jan. 2, 2001.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09752551 |
Jan 2001 |
US |
Child |
10162564 |
Jun 2002 |
US |