Claims
- 1. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces, said first electrode comprising a porous sheet material having a thickness and a quantity of catalyst distributed through the thickness of the porous sheet material between said major surfaces, and said first major surface has a first major surface hydrophilicity, and said second major surface has a second major surface hydrophilicity; (b) a second electrode; (c) an ion-exchange membrane interposed between said second major surface of said first electrode and said second electrode; wherein said first electrode is fluidly connected to a source of liquid reactant and the first surface hydrophilicity is greater than the second major surface hydrophilicity.
- 2. A liquid feed electrochemical fuel cell according to claim 1 wherein said second major surface of said first electrode comprises a hydrophobic polymer.
- 3. A liquid feed electrochemical fuel cell according to claim 1 wherein said first major surface of said first electrode comprises a hydrophilic polymer.
- 4. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces and a porous volume between said major surfaces, said first electrode comprising a sufficient quantity of catalyst concentrated at said first major surface and disposed between said major surfaces within the volume of said first electrode so that a reactant introduced to said first major surface of said first electrode is substantially completely reacted upon contacting said second major surface of said first electrode; (b) a second electrode; (c) an ion-exchange membrane interposed between said second major surface of said first electrode and said second electrode, and said second major surface of said first electrode is adjacent the ion-exchange membrane.
- 5. A liquid feed electrochemical fuel cell according to claim 4 wherein said first electrode comprises a porous electrically conductive sheet material which defines said volume, and said sheet material comprises carbon fiber paper.
- 6. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces, said first electrode comprising a porous sheet material and a quantity of catalyst concentrated at said first and second major surfaces of said first electrode, said quantity of catalyst being sufficient so that a reactant introduced to said first major surface of said first electrode is substantially completely reacted upon contacting said second major surface of said first electrode; (b) a second electrode; (c) an ion-exchange membrane interposed between said first electrode and said second electrode.
- 7. A liquid feed electrochemical fuel cell according to claim 6 wherein catalyst particles are impregnated into both major surfaces.
- 8. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces, said first electrode comprising at least one active layer, said at least one active layer comprising a porous sheet material having a volume and catalyst particles, and said first electrode further comprising a plurality of inactive layers, and each of said at least one active layer is disposed between two inactive layers; (b) a second electrode; (c) an ion-exchange membrane interposed between said first electrode and said second electrode.
- 9. The liquid feed fuel cell of claim 8, wherein said active layer has a volume and the catalyst particles are disposed throughout the volume of said active layer.
- 10. The liquid feed fuel cell of claim 8, wherein said first and second major surfaces of said first electrode are defined by said inactive layers.
- 11. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces, said first electrode comprising a plurality of layers having oppositely facing major planar surfaces, and each layer comprises porous sheet material and catalyst particles disposed at both of said major planar surfaces of each layer; (b) a second electrode; (c) an ion-exchange membrane interposed between said first electrode and said second electrode.
- 12. A liquid feed fuel cell according to claim 11, wherein said first electrode comprises at least four of said layers.
- 13. A liquid feed electrochemical fuel cell comprising:
(a) a first electrode having first and second oppositely facing major surfaces, said first electrode comprising a plurality of active layers, and said active layers comprise catalyst particles and a porous sheet material having a thickness, and said first electrode further comprising at least one inactive layer, and said at least one inactive layer is disposed between two active layers; (b) a second electrode; (c) an ion-exchange membrane interposed between said first electrode and said second electrode.
- 14. The liquid feed fuel cell of claim 13, wherein said first electrode comprises at least three active layers.
- 15. The liquid feed fuel cell of claim 13, wherein said active layers comprise carbon cloth filled with a matrix of said carbon particles and polymeric binder.
- 16. The liquid feed fuel cell of claim 13, wherein said catalyst particles are distributed throughout the thickness of said active layers.
- 17. The liquid feed fuel cell of claim 13, wherein said first and second major surfaces of said first electrode are defined by said active layers.
- 18. The liquid feed fuel cell of claim 13, wherein said at least one inactive layer has oppositely facing major planar surfaces and has channels formed in said major planar surfaces.
- 19. The liquid feed fuel cell of claim 18, wherein said at least one inactive layer comprises carbon fiber paper.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of U.S. patent application Ser. No. 09/255,428 filed Feb. 22, 1999, entitled “Method and Apparatus for Reducing Reactant Crossover in a Liquid Feed Electrochemical Fuel Cell”, which is a continuation of U.S. patent application Ser. No. 08/939,673 filed Sep. 29, 1997, entitled “Method and Apparatus for Reducing Reactant Crossover in a Liquid Feed Electrochemical Fuel Cell”, scheduled to issue as U.S. Pat. No. 5,874,182 on Feb. 23, 1999, which is a continuation of U.S. patent application Ser. No. 08/574,262 filed Dec. 18, 1995, entitled “Method and Apparatus for Reducing Reactant Crossover in an Electrochemical Fuel Cell”, now U.S. Pat. No. 5,672,439 issued Sep. 30, 1997.
Divisions (1)
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Number |
Date |
Country |
Parent |
09255428 |
Feb 1999 |
US |
Child |
10633413 |
Aug 2003 |
US |
Continuations (2)
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Number |
Date |
Country |
Parent |
08939673 |
Sep 1997 |
US |
Child |
09255428 |
Feb 1999 |
US |
Parent |
08574262 |
Dec 1995 |
US |
Child |
08939673 |
Sep 1997 |
US |