IP Library Granted Patent US 11,767,599
Granted Patent B2
US 11,767,599 · App. 17/949,856 · Granted Sep 26, 2023

Electrochemical devices, modules, and systems for hydrogen generation and methods of operating thereof

Inventors: Arne Ballantine (Incline Village, NV); Peter Light (San Francisco, CA); Albert Esser (Santa Cruz, CA); Chockkalingam Karuppaiah (Fremont, CA); Kirsten Burpee (San Jose, CA)
Assignee: Ohmium International, Inc.
C25B9/19C25B1/04C25B1/50C25B9/75C25B9/77C25B15/02C25B15/023C25B15/08
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Quick Facts
Patent No.
US 11,767,599
App. No.
17/949,856
Granted
Sep 26, 2023
Kind
B2
Abstract

A system for hydrogen generation includes at least one cabinet defining a first volume, a second volume, and a third volume, where the first volume, the second volume and the third volume are fluidically isolated from each other, a water circuit located in the first volume, an electrochemical module including an electrolyzer electrochemical stack located in the second volume, a hydrogen circuit located in the third volume, at least one first fluid connector fluidly connecting the water circuit and the electrolyzer electrochemical stack, and at least one second fluid connector fluidly connecting the electrolyzer electrochemical stack and the hydrogen circuit.

Claims (51)

1. A system for hydrogen generation, comprising:

at least one cabinet defining a first volume, a second volume, and a third volume, wherein the first volume, the second volume and the third volume are fluidically isolated from each other;

a water circuit located in the first volume, the water circuit comprising a heat exchanger;

an electrochemical module comprising an electrolyzer electrochemical stack located in the second volume;

a hydrogen circuit located in the third volume;

at least one first fluid connector fluidly connecting the water circuit and the electrolyzer electrochemical stack; and

at least one second fluid connector fluidly connecting the electrolyzer electrochemical stack and the hydrogen circuit.

2. The system of claim 1 , wherein:

the at least one cabinet comprises a single cabinet in which the first volume is isolated from the second volume by a first internal wall, and the second volume is isolated from the third volume by a second internal wall;

the at least one first fluid connector extends through the first internal wall; and

the at least one second fluid connector extends through the second internal wall.

3. The system of claim 1 , further comprising:

a first gas mover fluidly connected to the first volume but not the second or the third volumes, and configured to ventilate the first volume without ventilating the second or the third volumes;

a second gas mover fluidly connected to the second volume but not the first or the third volumes, and configured to ventilate the second volume without ventilating the first or the third volumes; and

a third gas mover fluidly connected to the third volume but not the first or the second volumes, and configured to ventilate the third volume without ventilating the first or the second volumes.

4. The system of claim 3 , wherein the first, second and third gas movers are operable to form a respective negative pressure in each of the first volume, the second volume, and the third volume relative to an environment outside of the single cabinet.

5. The system of claim 1 , wherein:

the electrolyzer electrochemical stack comprises at least one bipolar plate and a plurality of membrane electrode assemblies (MEAs).

6. The system of claim 5 , wherein:

the water circuit further comprises a pump, a reservoir, and a separator; and

the at least one first fluid connector comprises two fluid connectors.

7. The system of claim 6 , wherein:

the reservoir is in fluid communication between the separator and the pump;

the pump is in fluid communication with at least one anode channel of the electrochemical stack via one of the two first fluid connectors; and

the separator is in fluid communication with the at least one anode channel of the electrochemical stack via a second one of the two first fluid connectors.

8. The system of claim 1 , wherein the hydrogen circuit comprises a dryer comprising an inlet portion in fluid communication with at least one cathode channel of the electrolyzer electrochemical stack via the at least one second fluid connector and an outlet portion in fluid communication with a pump conduit.

9. The system of claim 8 , wherein the hydrogen circuit further comprises a moisture trap in fluid communication with the pump conduit.

10. The system of claim 9 , wherein the hydrogen circuit further comprises a hydrogen pump in fluid communication with the outlet portion and the inlet portion of the dryer.

11. The system of claim 4 , further comprising:

a controller in electrical communication with the electrochemical stack and located in a fourth volume of the cabinet which is fluidically isolated from each of the first volume, the second volume, and the third volume.

12. The system of claim 11 , further comprising a fan in fluid communication with the fourth volume.

13. The system of claim 11 , further comprising a plurality of gas sensors, wherein:

each of the plurality of gas sensors is configured to measure a hydrogen-containing gas;

each gas sensor is disposed in one of the first volume, the second volume, and the third volume;

each gas sensor is in electrical communication with the controller; and

the controller is configured to interrupt electrical communication between a power source and equipment in the cabinet based on a signal received from one or more of the plurality of gas sensors.

14. The system of claim 6 , wherein the heat exchanger is in thermal communication with one or more of the reservoir, the separator, or the pump.

15. The system of claim 1 , wherein the water circuit further comprises process equipment useful for the purification of process water.

16. A system for hydrogen generation, comprising:

at least one cabinet defining a first volume, a second volume, and a third volume, wherein the first volume, the second volume and the third volume are fluidically isolated from each other;

a water circuit located in the first volume;

an electrochemical module comprising an electrolyzer electrochemical stack located in the second volume;

a hydrogen circuit located in the third volume, the hydrogen circuit comprising a moisture trap;

at least one first fluid connector fluidly connecting the water circuit and the electrolyzer electrochemical stack; and

at least one second fluid connector fluidly connecting the electrolyzer electrochemical stack and the hydrogen circuit.

17. The system of claim 16 , wherein the hydrogen circuit further comprises a dryer comprising an inlet portion in fluid communication with at least one cathode channel of the electrolyzer electrochemical stack via the at least one second fluid connector and an outlet portion in fluid communication with a pump conduit.

18. The system of claim 17 , wherein the moisture trap is in fluid communication with the pump conduit.

19. The system of claim 16 , wherein:

the water circuit further comprises a pump, a reservoir, and a separator; and

the at least one first fluid connector comprises two fluid connectors.

20. The system of claim 16 , wherein the water circuit further comprises process equipment useful for the purification of process water.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Mar 27, 2023
From: OHMIUM, INC.; OHMIUM INTERNATIONAL, INC.
To: OHMIUM INTERNATIONAL, INC.
Reel/Frame 063109/0801 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2022
From: BALLANTINE, ARNE; LIGHT, PETER; ESSER, ALBERT; KARUPPAIAH, CHOCKKALINGAM; BURPEE, KIRSTEN
To: OHMIUM, INC.
Reel/Frame 061173/0023 →
Continuity (3)
Continuation 17101232 · Nov 23, 2020
Provisional Application 62938494 · Nov 21, 2019
Related Publication 20230021049A1 · Jan 19, 2023
Cited By (5)
US 12,385,145 US 12,473,658 US 12,476,552 US 12,516,426 US 12,735,797