Claims
- 1. A fuel cell pressurization system comprising:
1. A fuel cell (98); 2. a compressor-expander (70); 3. an ejector (1); 4. A steam boiler (94); wherein, pressurized and energetic products of reaction from said fuel cell (98) are conducted through a conduit (86) to the primary fluid inlet conduit (2) of a compressor-expander (70) wherein they are de-energized and discharged from the system, said primary fluid imparting its energy on a reactant-rich secondary fluid which is introduced to said compressor-expander through secondary fluid inlet conduit (3) and thereafter compressed in said compressor-expander (70) and discharging into an ejector (1) through a secondary fluid inlet conduit (3), said ejector (1) being energized by steam conducted to the primary fluid inlet conduit (2) and provided by a boiler (94); said reactant-rich secondary fluid being further pressurized in said ejector (1) and having the mixture of the steam primary fluid and the reactant rich secondary fluid discharged through an outlet conduit (4) into the fuel cell (98).
- 2. A fuel cell (98) pressurization system in accordance with claim 1 whereby said ejector (1) is a pressure-exchange ejector.
- 3. A fuel cell (98) pressurization system in accordance with claim 1 whereby said reactant rich secondary fluid is air.
- 4. A fuel cell (98) pressurization system in accordance with claim 1 whereby said reactant rich secondary fluid is reformate.
- 5. A fuel cell (98) pressurization system in accordance with claim 1 wherein said fuel cell (98) is selected from a group consisting of proton exchange membrane fuel cells, phosphoric acid fuel cells, molten carbonate fuel cells, and solid oxide fuel cells.
- 6. A fuel cell (98) pressurization system in accordance with claim 1 whereby said compressor-expander (70) is selected from a group consisting of turbo-compressor-expanders, positive displacement compressor-expanders, wave-rotor compressor-expanders, and pressure-exchange compressor-expanders.
- 7. A method of pressurizing a fuel cell comprising the steps of:
1. extracting pressurized products of reaction from said fuel cell (98); and, 2. conducting said pressurized products through a conduit (86) to the primary fluid inlet conduit (2) of a compressor-expander (70); and, 3. de-energizing said primary fluid in said compressor-expander (70) and discharging it from the system; and, 4. conducting to said compressor-expander (70) through secondary fluid inlet conduit (3) reactant rich fluid; and, 5. imparting the energy lost by said primary fluid to said secondary fluid in said compressor-expander (70); and, 6. conducting said reactant-rich secondary fluid from said compressor-expander (70) to the secondary fluid inlet (3) of an ejector (1); and, 7. providing energy to said ejector (1) by conducting pressurized steam through primary inlet conduit (2) of said ejector (1); and, 8. discharging pressurized mixture of said reactant-rich secondary fluid and steam into said fuel cell (98).
- 8. A method of fuel cell (98) pressurization in accordance with claim 7 whereby said ejector (1) is a pressure-exchange ejector.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a division of U.S. application 09/679,053 which was filed Oct. 3, 2000 under the same inventor and entitled: PRESSURE EXCHANGING COMPRESSOR-EXPANDER AND METHODS OF USE.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09679053 |
Oct 2000 |
US |
Child |
09942303 |
Aug 2001 |
US |