IP Library Granted Patent US 12710136
Granted Patent B2
US 12710136 · App. 18/665,820 · Granted Aug 18, 2026

Gas storage device

Inventor: Nicolas Kernene (St. Charles, IL)
Assignee: Twisted Sun Innovations, Inc.
F17C11/005B32B1/00B32B1/08B60K15/03006F17C3/00F17C6/00H01M8/04089B60K2015/03164B60K2015/03315F17C2201/0119F17C2227/0302F17C2227/0337H01M2250/20Y02T90/40Y10T428/13Y10T428/1352Y10T428/1379Y10T428/1386
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Quick Facts
Patent No.
US 12710136
App. No.
18/665,820
Granted
Aug 18, 2026
Kind
B2
Abstract

The present disclosure provides a gas storage device. In an embodiment, the gas storage device includes a cylinder with opposing ends. An endcap is present at each end. The cylinder and the endcaps form an enclosure. Each endcap includes a connector. A diaphragm is located in the enclosure. The diaphragm includes an annular sidewall. The device includes an inner chamber defined by an inner surface of the sidewall, and a storage space between an interior surface of the cylinder and an outer surface of the sidewall. A metal hydride composition is located in the storage space.

Claims (42)

1 . A hydrogen charging station comprising:

a pressure converter;

a pressurized tank in fluid communication with the pressure converter; and

a hydrogen storage device in fluid communication with the pressure converter, wherein the hydrogen storage device comprises:

a cylinder comprising a sidewall and opposing first and second ends, a first endcap at the first end and a second endcap at the second end, wherein the cylinder and the first and second endcaps form an enclosure, and wherein an interior surface of the sidewall is fluted;

at least one of the first endcap and the second endcap comprising a connector;

a diaphragm in the enclosure;

an inner chamber circumscribed by an inner surface of the diaphragm;

a storage space between the interior surface of the sidewall of the cylinder and an outer surface of the diaphragm; and

a metal alloy composition located in the storage space.

2 . The hydrogen charging station of claim 1 , wherein the metal alloy composition stores hydrogen gas and wherein the pressure converter receives the hydrogen gas from the hydrogen storage device and supplies the hydrogen gas to the pressurized tank.

3 . The hydrogen charging station of claim 2 , wherein the hydrogen gas is stored in the hydrogen storage device at a pressure of 5 to 400 psi and wherein the hydrogen gas is stored in the pressurized tank at a pressure of 8,000 to 16,000 psi.

4 . The hydrogen charging station of claim 1 , further comprising a hose coupled to the pressurized tank, wherein the hose delivers hydrogen gas from the pressurized tank to a vehicle.

5 . The hydrogen charging station of claim 4 , wherein, after delivering the hydrogen gas to a vehicle, any remaining hydrogen gas in the pressurized tank is released from the pressurized tank.

6 . The hydrogen charging station of claim 1 , wherein hydrogen storage device is located underground.

7 . The hydrogen charging station of claim 1 , wherein the connector of the hydrogen storage device is coupled to the pressure converter and wherein a second connector of the hydrogen storage device is coupled to a second hydrogen storage device.

8 . The hydrogen charging station of claim 1 , wherein the diaphragm is cylindrical and comprises a diaphragm sidewall.

9 . The hydrogen charging station of claim 8 , wherein the diaphragm sidewall is fluted and wherein peaks and grooves of the fluted diaphragm sidewall form cylindrical channels with respective peaks and grooves of the fluted interior surface of the sidewall of the cylinder.

10 . The hydrogen charging station of claim 1 , wherein the diaphragm is permeable to hydrogen gas.

11 . The hydrogen charging station of claim 1 , further comprising:

a semi-permeable membrane coupled to the connector of the hydrogen storage device; and

a valve in the connector of the at least one of the first endcap and the second endcap.

12 . The hydrogen charging station of claim 1 , further comprising a vibration device coupled to the hydrogen storage device.

13 . The hydrogen charging station of claim 12 , wherein the vibration device is one of an actuator, a solenoid, a ram head, a motor, and a piezoelectric material.

14 . A hydrogen charging station comprising:

a pressure converter;

a pressurized tank in fluid communication with the pressure converter; and

a hydrogen storage device in fluid communication with the pressure converter, wherein the hydrogen storage device comprises:

a cylinder comprising a sidewall, a first endcap, and a second endcap that form an enclosure, wherein an interior surface of the sidewall comprises grooves;

at least one of the first endcap and the second endcap comprising a connector;

a diaphragm in the enclosure;

an inner chamber circumscribed by an inner surface of the diaphragm;

a storage space between the interior surface of the sidewall of the cylinder and an outer surface of the diaphragm; and

a metal alloy composition located in the storage space.

15 . The hydrogen charging station of claim 14 , wherein the grooves on the interior surface of the sidewall are oriented parallel to a longitudinal axis of the gas storage device.

16 . The hydrogen charging station of claim 14 , wherein the metal alloy composition stores hydrogen gas and wherein the pressure converter receives the hydrogen gas from the hydrogen storage device and supplies the hydrogen gas to the pressurized tank.

17 . The hydrogen charging station of claim 16 , wherein the hydrogen gas is stored in the hydrogen storage device at a pressure of 5 to 400 psi and wherein the hydrogen gas is stored in the pressurized tank at a pressure of 8,000 to 16,000 psi.

18 . The hydrogen charging station of claim 16 , further comprising a hose coupled to the pressurized tank, wherein the hose delivers hydrogen gas from the pressurized tank to a vehicle.

19 . The hydrogen charging station of claim 14 , further comprising:

a semi-permeable membrane coupled to the connector of the hydrogen storage device; and

a valve in the connector of the at least one of the first endcap and the second endcap.

20 . The hydrogen charging station of claim 14 , further comprising a vibration device coupled to the hydrogen storage device, wherein the vibration device is one of an actuator, a solenoid, a ram head, a motor, and a piezoelectric material.