Claims
- 1. A solid oxide fuel cell element comprising:
an integral electrode of honeycomb shape incorporating interconnecting channel walls forming parallel channels extending from a first face to a second face of the honeycomb shape; plural electrolyte layers disposed on the walls of selected channels; and plural counter-electrode layers disposed the electrolyte layers, each selected channel sharing at least one channel wall with a channel other than a selected channel.
- 2. A solid oxide fuel cell element in accordance with claim 1 wherein the electrode is an extruded honeycomb shape.
- 3. A solid oxide fuel cell element in accordance with claim 1 wherein the electrode is a porous conductive metallic anode of extruded honeycomb shape.
- 4. A solid oxide fuel cell element in accordance with claim 1 wherein the metallic anode is composed of porous nickel, nickel alloy, or nickel cermet.
- 5. A solid oxide fuel cell element in accordance with claim 1 wherein the electrode is a honeycomb shape comprising a combination of channels of hexagonal cross-section sharing channel walls with channels of triangular cross-section.
- 6. A solid oxide fuel cell element in accordance with claim 1 wherein the electrolyte is composed predominantly of zirconia.
- 7. A solid oxide fuel cell element in accordance with claim 3 wherein the counter-electrode layers are composed of a cathodic material selected from the group consisting of lanthanum strontium manganite, lanthanum strontium chromite, and silver alloy.
- 8. A method for making a solid oxide fuel cell element comprising the steps of:
providing an integral electrode of honeycomb shape incorporating interconnecting channel walls forming parallel channels extending from a first face to a second face of the honeycomb shape; providing electrolyte layers on the walls of selected channels, each selected channel sharing at least one channel wall with a channel not provided with an electrolyte layer; and providing counter-electrode layers on the electrolyte layers.
- 9. A method for making a solid oxide fuel cell element in accordance with claim 8 wherein the electrolyte or electrode layers are provided by selective liquid coating.
- 10. A method for making a solid oxide fuel cell element in accordance with claim 9 wherein selective liquid coating is promoted by capillary and plastic action.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/173,399, filed Dec. 28, 1999, entitled “Honeycomb Electrode Fuel Cells”, by Badding et al.
Provisional Applications (1)
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Number |
Date |
Country |
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60173399 |
Dec 1999 |
US |