Claims
- 1. In a solid oxide fuel cell comprising an anode electrode, a cathode electrode and an electrolyte disposed between said anode electrode and said cathode electrode, a method for generating electricity comprising the steps of:
contacting said anode electrode with a dry fluid fuel selected from the group consisting of hydrocarbons, carbonaceous materials and mixtures thereof; contacting said cathode electrode with an oxidant; and directly oxidizing said dry fluid fuel in said solid oxide fuel cell, resulting in generation of electricity.
- 2. A method in accordance with claim 1, wherein said oxidation is carried out at a voltage potential in a range of about 0 to about 1.1 volts.
- 3. A method in accordance with claim 1, wherein said anode electrode comprises a porous YSZ layer and one of a metal and a metal alloy comprising an electron-conducting metal having an oxide form that melts at a temperature less than about 1550° C.
- 4. A method in accordance with claim 3, wherein said electronconducting metal is selected from the group consisting of Cu, Ni and alloys thereof.
- 5. A method in accordance with claim 3, wherein said anode electrode further comprises ceria.
- 6. A method in accordance with claim 1, wherein said dry fluid fuel comprises at least two carbon atoms.
- 7. A method in accordance with claim 6, wherein said dry fluid fuel comprises in a range of 2 to 20 carbon atoms.
- 8. A method in accordance with claim 1, wherein said dry fluid fuel is selected from the group consisting of methane, alcohols, toluene, n-decane, synthetic diesel fuels and mixtures thereof.
- 9. A method in accordance with claim 3, wherein said electronconducting metal comprises at least about 10% by weight of said porous YSZ layer.
- 10. A method in accordance with claim 5, wherein said ceria comprises in a range of about 5% to about 40% by weight of said porous YSZ layer.
- 11. A method for direct oxidation of dry fluid fuel comprising the steps of:
introducing said dry fluid fuel directly into an anode side of a solid oxide fuel cell comprising an anode electrode comprising a porous YSZ layer and one of a metal and a metal alloy comprising an electron-conducting metal having an oxide form which melts at a temperature of less than about 1550° C., a cathode electrode and an electrolyte disposed between said anode electrode and said cathode electrode; introducing an oxidant into a cathode side of said solid oxide fuel cell; and electrochemically reacting said dry fluid fuel and said oxidant, whereby said dry fluid fuel is oxidized to produce electrical energy.
- 12. A method in accordance with claim 11, wherein said dry fluid fuel comprises at least two carbons.
- 13. A method in accordance with claim 12, wherein said dry fluid fuel comprises in a range of about 2 to about 20 carbons.
- 14. A method in accordance with claim 11, wherein said dry fluid fuel is selected from the group consisting of methane, alcohols, toluene, n-decane, synthetic diesel fuels and mixtures thereof.
- 15. A method in accordance with claim 11, wherein said electron- conducting metal is selected from the group consisting of Cu, Ni and alloys thereof.
- 16. A method in accordance with claim 11, wherein said anode electrode further comprises ceria.
Parent Case Info
[0001] This application is a continuation-in-part application of co-pending U.S. patent application Ser. No. 09/261,324 filed Mar. 03, 1999 and PCT International Patent Application No. PCT/US00/05735 filed Mar. 03, 2000.
Continuation in Parts (2)
|
Number |
Date |
Country |
| Parent |
09261324 |
Mar 1999 |
US |
| Child |
09934797 |
Aug 2001 |
US |
| Parent |
PCT/US00/05735 |
Mar 2000 |
US |
| Child |
09934797 |
Aug 2001 |
US |