Claims
- 1. A fuel cell, comprising:
a reformer having a reformer chamber formed therein; a membrane electrode assembly having an anode chamber formed therein and an anodic electrode coating, said anodic electrode coating suitable for a conversion of methanol and for a conversion of hydrogen; and a reformer catalyst layer disposed in said anode chamber following said anodic electrode coating of said membrane electrode assembly (MEA).
- 2. The fuel cell according to claim 1, further comprising a separator disposed between said anodic electrode coating of said membrane electrode assembly (MEA) and said reformer catalyst layer.
- 3. The fuel cell according to claim 1, wherein said anodic electrode coating has a catalyst and at least one of a concentration and a composition of said catalyst is variable.
- 4. The fuel cell according to claim 1, wherein said reformer catalyst layer is present in an amount of from 3 to 50 mg/cm2.
- 5. The fuel cell according to claim 1, wherein said membrane electrode assembly has a membrane reinforced with a woven textile fabric.
- 6. A method for operating a fuel cell, which comprises the steps of:
operating the fuel cell at at least one of a low pressure and a low temperature as a direct methanol fuel cell (DMFC); and operating the fuel cell at at least one of a high pressure and a high temperature as a polymer electrolyte membrane (PEM) fuel cell operating with hydrogen.
- 7. The method according to claim 6, which comprises utilizing the direct methanol fuel cell during a cold start of the fuel cell.
- 8. The method according to claim 7, which comprises reacting a liquid methanol/water mixture at an anode in an event of a cold start, while the fuel cell is starting up.
- 9. The method according to claim 6, which comprises during long-turn operation, at least one of an operating pressure and an operating temperature are sufficient for a reforming reaction to take place inside the fuel cell.
- 10. The method according to claim 6, which comprises during operation, at least one of an operating temperature of al least 150° C. and an operating pressure of at least 5 bar prevails.
- 11. The method according to claim 10, which comprises during long-term operation, operating the fuel cell as a high-temperature polymer electrolyte membrane (HT-PEM) fuel cell.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 199 45 667.4 |
Sep 1999 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application PCT/DE00/03167, filed Sep. 12, 2000, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
| Parent |
PCT/DE00/03167 |
Sep 2000 |
US |
| Child |
10105548 |
Mar 2002 |
US |