IP Library Granted Patent US 11,626,601
Granted Patent B2
US 11,626,601 · App. 16/417,197 · Granted Apr 11, 2023

Hydrogen storage unit and fuel cell system

Inventor: Mitsuaki Inagaki (Nagoya, JP)
Assignee: BROTHER KOGYO KABUSHIKI KAISHA
H01M8/04216F17C11/00F17C11/005H01M8/04H01M8/04029H01M8/04208H01M8/04701H01M8/04731H01M8/0606F17C2227/0337H01M8/10Y02E60/32
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Quick Facts
Patent No.
US 11,626,601
App. No.
16/417,197
Granted
Apr 11, 2023
Kind
B2
Abstract

To provide a hydrogen storage unit that can heat a storage container including hydrogen absorbing alloy with favorable thermal efficiency, and a fuel cell system provided with the hydrogen storage unit. The cell body of the fuel cell is provided with a fuel cell stack configured to react hydrogen and oxygen to generate electricity, and a stack cooling passage configured to cool the fuel cell stack by circulation of a heat medium. The hydrogen storage unit of the hydrogen supply unit of the fuel cell is provided with: a housing; a plurality of cylinders that are housed in the housing and include hydrogen absorbing alloy; and a temperature control member having a heat medium flowing through the temperature control member so as to heat or cool the cylinder.

Claims (69)

1. A hydrogen storage unit comprising:

a housing;

a plurality of storage containers that are housed in the housing and include hydrogen absorbing alloy; and

a temperature control member that is housed in the housing and has a heat medium flowing through the temperature control member so as to heat or cool the storage containers; wherein

the temperature control member has a flow passage, through which the heat medium flows, inside the temperature control member,

the flow passage has a forward passage and a return passage formed to fold back on the other end side of the temperature control member, and

an inlet connection portion through which the heat medium in the forward passage is introduced, and an outlet connection portion through which the heat medium in the return passage is discharged are provided in a direction in which an opening valve of the storage container is provided,

the inlet connection portion and the outlet connection portion are located on one end side of the temperature control members,

the forward passage and the return passage are holes that respectively penetrate the temperature control member in the longitudinal direction,

a concave portion that connects an end portion of the forward passage and an end portion of the return passage is provided on the other end side of the temperature control member, and

a contact plate that is put into contact with an end portion of the forward passage and an end portion of the return passage and closes the end portions and the concave portion is provided,

the concave portion is formed inner than an end surface of the temperature control member.

2. The hydrogen storage unit according to claim 1 , wherein

the storage container has a cylindrical shape, and

the temperature control member has a shape to fill a space surrounded by side faces of adjacent storage containers and a side face of the housing.

3. The hydrogen storage unit according to claim 1 , wherein

the storage container has a cylindrical shape, and

the temperature control member has a side face facing a side face of the housing, and a circular arc side face located along side faces of adjacent storage containers.

4. The hydrogen storage unit according to claim 2 , wherein

the storage container has a cylindrical shape, and

the temperature control member has a side face facing a side face of the housing, and a circular arc side face located along side faces of adjacent storage containers.

5. The hydrogen storage unit according to claim 3 , wherein the hydrogen storage unit has a gap between the side face of the temperature control member and a side face of the housing facing the side face.

6. The hydrogen storage unit according to claim 3 , wherein the hydrogen storage unit has a heat insulator between the side face of the temperature control member and a side face of the housing facing the side face.

7. The hydrogen storage unit according to claim 5 , wherein the hydrogen storage unit has a heat insulator between the side face of the temperature control member and a side face of the housing facing the side face.

8. The hydrogen storage unit according to claim 2 , wherein

the storage container has a cylindrical part, and a tip part provided with an opening/closing valve, and

the temperature control member has a length that substantially coincides with a length of the cylindrical part.

9. The hydrogen storage unit according to claim 8 , wherein

the storage containers are juxtaposed in the housing,

a plurality of temperature control members are provided in the housing, and

respective flow passages of the plurality of temperature control members are arranged in parallel and are connected with each other on the one end side of the temperature control members.

10. The hydrogen storage unit according to claim 9 , wherein the flow passages are provided parallel to a longitudinal direction of the temperature control members.

11. The hydrogen storage unit according to claim 10 , wherein

the flow passage has a forward passage and a return passage formed to fold back on the other end side of the temperature control member, and

an inlet connection portion through which the heat medium in the forward passage is introduced, and an outlet connection portion through which the heat medium in the return passage is discharged are provided in a direction in which an opening valve of the storage container is provided.

12. The hydrogen storage unit according to claim 1 , wherein the temperature control member and the storage containers are adhered to each other.

13. A fuel cell system comprising:

a hydrogen storage unit according to claim 1 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity; and

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium,

wherein a heat medium to flow through the temperature control member is a heat medium which has cooled the power generation unit.

14. A fuel cell system comprising:

a hydrogen storage unit according to claim 2 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity; and

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium,

wherein a heat medium to flow through the temperature control member is a heat medium which has cooled the power generation unit.

15. A fuel cell system comprising:

a hydrogen storage unit according to claim 3 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity; and

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium,

wherein a heat medium to flow through the temperature control member is a heat medium which has cooled the power generation unit.

16. A fuel cell system characterized by comprising:

a hydrogen storage unit according to claim 1 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity;

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium; and

a heat exchanger in which a heat medium that flows through the temperature control member and a heat medium that has cooled the power generation unit exchange heat with each other, wherein

the heat medium that flows through the temperature control member is different from the heat medium that has cooled the power generation unit.

17. A fuel cell system comprising:

a hydrogen storage unit according to claim 2 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity;

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium; and

a heat exchanger in which a heat medium that flows through the temperature control member and a heat medium that has cooled the power generation unit exchange heat with each other, wherein

the heat medium that flows through the temperature control member is different from the heat medium that has cooled the power generation unit.

18. A fuel cell system comprising:

a hydrogen storage unit according to claim 3 ;

a power generation unit configured to react hydrogen and oxygen so as to generate electricity;

a power generation unit cooling passage configured to cool the power generation unit by circulation of a heat medium; and

a heat exchanger in which a heat medium that flows through the temperature control member and a heat medium that has cooled the power generation unit exchange heat with each other, wherein

the heat medium that flows through the temperature control member is different from the heat medium that has cooled the power generation unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2019
From: INAGAKI, MITSUAKI
To: BROTHER KOGYO KABUSHIKI KAISHA
Reel/Frame 049244/0164 →
Priority Claims (1)
JP JP2016-226079 · Nov 21, 2016 · national
Continuity (2)
Continuation PCTJP2017034676 · Sep 26, 2017
Related Publication 20190273271A1 · Sep 5, 2019