IP Library Granted Patent US 9,133,553
Granted Patent B2
US 9,133,553 · App. 13/757,478 · Granted Sep 15, 2015

Externally-reinforced water electrolyzer module

Inventors: Chris Wilson (Port Perry, CA); Michael Stemp (Toronto, CA); James Hinatsu (Mississauga, CA)
Assignee: Next Hydrogen Corporation
C25B1/08C25B9/00C25B9/18C25B9/206H01M2/1016Y02E60/366
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Quick Facts
Patent No.
US 9,133,553
App. No.
13/757,478
Granted
Sep 15, 2015
Kind
B2
Abstract

A structural plate with external reinforcing means is provided for an electrolyzer module. The structural plate defines at least one degassing chamber and a half cell chamber opening. The external reinforcing means contact the structural plate for mitigating outward displacement of the structural plate in response to fluid pressure within the structural plate. The structural plate and the external reinforcing means define interlocking features for achieving contact and corresponding mechanical reinforcement.

Claims (26)

1. An electrolyser module comprising a plurality of structural plates each having a sidewall extending between opposite end faces with a half cell chamber opening and at least two degassing chamber openings extending through said structural plate between said opposite end faces;

said structural plates being arranged in face-to-face juxtaposition in a longitudinal stacking direction between opposite end pressure plates,

each said half cell chamber opening at least partially housing electrolytic half cell components comprising at least an electrode, a bipolar plate in electrical communication with said electrode, and a membrane communicating with said electrode for providing ionic conduction, said structural plates and half cell components defining an array of series connected electrolytic cells surmounted by at least one degassing chamber;

said structural plates defining, at least when in face-to-face juxtaposition, passages for fluid flow inside said electrolyser module;

said electrolyser module further comprising at least one external reinforcing means contacting at least one of said structural plates for mitigating outward displacement of said structural plates in a direction transverse to said longitudinal stacking direction;

said at least one of said structural plates further defining contacting means for achieving contact with said at least one external reinforcing means.

2. An electrolyser module as claimed in claim 1 , further comprising at least one intermediate pressure plate, comprising at least a body, interspersed between said structural plates along a length of said electrolyser module.

3. An electrolyser module as claimed in any of claims 1 and 2 , wherein said at least one external reinforcing means comprises a main body that runs along the length of said electrolyser module, and further comprises contacting means which contact similarly-shaped contacting means on the side walls of at least some of said structural plates to achieve contact between said at least one external reinforcing means and said at least some of said structural plates.

4. An electrolyser module as claimed in claim 2 , wherein said at least one external reinforcing means is attached to at least one of said end pressure plates and said at least one intermediate pressure plate.

5. An electrolyser module as claimed in claim 2 , further comprising at least one feed water passage passing through at least one of said end pressure plates and said at least one intermediate pressure plate, and then passing through said structural plates.

6. An electrolyser module as claimed in claim 1 and 2 , wherein said structural plates are comprised of at least one of plastic and fiber-reinforced plastic.

7. An electrolyser module as claimed in claim 6 , wherein said plastic is comprised of at least one of polysulfone, polyphenylene oxide, polyphenylene sulphide, polypropylene, and polyoxymethylene.

8. An electrolyser module as claimed in claim 6 , wherein said at least one external reinforcing means comprise parts having significantly higher strength and elastic modulus than said at least one of plastic and fiber-reinforced plastic.

9. An electrolyser module as claimed in claim 8 , wherein said at least one external reinforcing means is comprised of at least one of metal, plated metal and polymer-coated metal.

10. An electrolyser module as claimed in claim 9 , wherein said metal comprises at least one of steel and stainless steel.

11. A structural plate for an electrolyser module having a sidewall extending between opposite end faces with a half cell chamber opening and at least two degassing chamber openings extending through said structural plate between said opposite end faces;

said structural plate defining, at least when in face-to-face juxtaposition in a longitudinal stacking direction with at least one of another structural plate, an end pressure plate, and an intermediate pressure plate, passages for fluid flow inside said electrolyser module;

said structural plate further defining contacting means for achieving contact with at least one external reinforcing means for mitigating outward displacement of said structural plate in a radial direction transverse to said longitudinal stacking direction.

12. An electrolyser stack comprising a plurality of structural plates each having a sidewall extending between opposite end faces with a half cell chamber opening, at least two header flow passage openings and at least one footer flow passage opening extending through said structural plate between said opposite end faces;

said structural plates being arranged in face-to-face juxtaposition between opposite end pressure plates;

each said half cell chamber opening at least partially housing electrolytic half cell components comprising at least an electrode, a bipolar plate in electrical communication with said electrode, and a membrane communicating with said electrode for providing ionic conduction, said structural plates and half cell components defining an array of series connected electrolytic cells;

said structural plates defining, at least when in face-to-face juxtaposition in a longitudinal stacking direction, passages for fluid flow inside said electrolyser module;

said electrolyser stack further comprising at least one external reinforcing means contacting at least one of said structural plates for mitigating outward displacement of said structural plates in a direction transverse to said longitudinal stacking direction; and

said at least one of said structural plates further defining contacting means for achieving contact with said at least one external reinforcing means.

13. An electrolyser stack as claimed in claim 12 , further comprising at least one intermediate pressure plate, comprising at least a body, interspersed between said structural plates along a length of said electrolyser stack.

14. The electrolyser module as claimed in any one of claims 1 and 2 , further comprising at least one liquid communication passage for liquid communication between said at least first and second degassing chambers.

Assignments (2)
SECURITY INTEREST Recorded May 15, 2025
From: NEXT HYDROGEN CORPORATION
To: EXPORT DEVELOPMENT CANADA
Reel/Frame 071129/0201 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2013
From: WILSON, CHRIS; STEMP, MICHAEL; HINATSU, JAMES
To: NEXT HYDROGEN CORPORATION
Reel/Frame 029848/0944 →
Continuity (2)
Provisional Application 61700550 · Sep 13, 2012
Related Publication 20140069808A1 · Mar 13, 2014