Claims
- 1. A vehicle using hydrogen absorbing alloys, comprising:
- a plurality of hydrogen absorbing alloy storing vessels for independently storing a plurality of hydrogen absorbing alloys with a different hydrogen equilibrium decomposition pressure,
- a connecting means for passing hydrogen fro and to among said plurality of hydrogen absorbing alloy storing vessels, said connecting means includes hydrogen flow adjusting valves, and
- a heating means for heating a low pressure hydrogen absorbing alloy which has the lowest hydrogen equilibrium decomposition pressure among said plurality of hydrogen absorbing alloys, using combustion heat of fuel of an internal combustion engine or an external combustion engine of said vehicle as a heat source,
- wherein, when said heating means heats said low pressure hydrogen absorbing alloy so that hydrogen is desorbed from said low pressure hydrogen absorbing alloy and then is absorbed by a high pressure hydrogen absorbing alloy of said plurality of hydrogen absorbing alloys, said high pressure hydrogen absorbing alloy having a hydrogen equilibrium decomposition pressure higher than that of said low pressure hydrogen absorbing alloy, exothermic heat generated by absorption of hydrogen by said high pressure hydrogen absorbing alloy is utilized for heating the air in a passenger compartment or a component of said vehicle;
- when hydrogen is desorbed from said high pressure hydrogen absorbing alloy, endothermic heat generated by desorption of hydrogen from said high pressure hydrogen absorbing alloy is utilized for cooling the air in said passenger compartment or said component of said vehicle;
- when hydrogen is desorbed from said high pressure hydrogen absorbing alloy and then is absorbed by said low pressure hydrogen absorbing alloy, exothermic heat generated by absorption of hydrogen by said low pressure hydrogen absorbing alloy is utilized for heating the air in said passenger compartment or said component of said vehicle; and
- heat is directly exchanged between at least one of said hydrogen absorbing alloy storing vessels, where said at least one of said hydrogen storing vessels stores a high pressure hydrogen absorbing alloy, and said component.
- 2. A vehicle according to claim 1, wherein said component is a handle.
- 3. A vehicle according to claim 1, wherein said component is a seat.
- 4. A vehicle according to claim 1, wherein the heat capacity of said hydrogen absorbing alloy storing vessel is not more than that of said hydrogen absorbing alloy stored therein.
- 5. A vehicle according to claim 1, wherein the void fraction of said hydrogen absorbing alloy storing vessel is in the range of 40 to 75%.
- 6. A vehicle according to claim 1, wherein each of said plurality of hydrogen absorbing alloy storing vessels is in a tube-like shape, and the longitudinal direction of each of said plurality of hydrogen absorbing alloy storing vessels is horizontally maintained.
- 7. A vehicle according to claim 1, wherein a cooling medium of said fuel of said internal combustion engine or said external combustion engine is used as said heat source for heating said low pressure hydrogen absorbing alloy.
- 8. A vehicle according to claim 1, wherein exhaust gas generated by combustion of said fuel of said internal combustion engine or said external combustion engine is used as said heat source for heating said low pressure hydrogen absorbing alloy.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-338420 |
Dec 1992 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 08/166,505, filed Dec. 13, 1993 now U.S. Pat. No. 5,469,913.
US Referenced Citations (9)
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Divisions (1)
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Number |
Date |
Country |
Parent |
166505 |
Dec 1993 |
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