IP Library Granted Patent US 9,499,401
Granted Patent B2
US 9,499,401 · App. 14/671,708 · Granted Nov 22, 2016

Radial flow reactor systems and related methods

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Quick Facts
Patent No.
US 9,499,401
App. No.
14/671,708
Granted
Nov 22, 2016
Kind
B2
Abstract

The present disclosure provides liquid/solid phase reactor systems that generate product gases. The present disclosure also provides for methods of generating gas using the systems of the present disclosure.

Claims (41)

1. A hydrogen gas generator comprising:

a cartridge, the cartridge comprising:

a casing comprising an outer housing;

an internal compartment comprising two end caps comprising solid material impermeable to gas flow and one or more internal compartment side walls configured to be gas permeable and restrictive of liquid and solid material transport;

a hydrogen outlet valve in the casing;

a hydrogen flow path from a volume between one of the one or more internal compartment side walls and the outer housing to the hydrogen outlet valve;

a solid reactant material disposed within the internal compartment, said solid reactant material comprising a hydrogen containing material capable of releasing hydrogen gas when contacted with a liquid reactant; and

one or more fluid distribution networks disposed within the internal compartment and configured to deliver the liquid reactant to the solid reactant material; and

a fluid injection system configured to controllably provide the liquid reactant through at least one end cap and into the one or more fluid distribution networks.

2. The hydrogen gas generator of claim 1 , wherein the fluid injection system is disposed within the cartridge.

3. The hydrogen gas generator of claim 1 , wherein the fluid injection system is disposed external to the cartridge.

4. The hydrogen gas generator of claim 1 , wherein the solid reactant material comprises an alkali metal silicide.

5. The hydrogen gas generator of claim 1 , wherein the one or more fluid distribution networks are configured to change the location of fluid distribution during operation.

6. The hydrogen gas generator of claim 1 , wherein the one or more side walls comprise one or more layers of wire mesh, PTFE membrane, and fiberglass.

7. A fuel cell system comprising: a fuel cell battery; and the hydrogen gas generator of claim 1 .

8. A method of generating hydrogen gas comprising:

disposing a solid reactant material within an internal compartment of a cartridge, said cartridge comprising:

a casing comprising an outer housing;

an internal compartment comprising two end caps comprising solid material impermeable to gas flow and one or more internal compartment side walls configured to be gas permeable and restrictive of liquid and solid material transport;

a hydrogen outlet valve in the casing;

a hydrogen flow path from a volume between the one of one or more internal compartment side walls and the outer housing to the hydrogen outlet valve;

a solid reactant material disposed within the internal compartment, said solid reactant material comprising a hydrogen containing material capable of releasing hydrogen gas when contacted with a liquid reactant; and

one or more fluid distribution networks disposed within the internal compartment and configured to deliver a liquid reactant to the solid reactant material; and

selectively providing the liquid reactant with a fluid injection system configured to controllably provide the liquid reactant through at least one end cap, into the one or more fluid distribution networks, and to the solid reactant material to initiate a reaction between the liquid reactant and the solid reactant material to release hydrogen gas.

9. The method of claim 8 , wherein the solid reactant material comprises an alkali metal silicide.

10. The method of claim 8 , wherein the one or more fluid distribution networks are configured to change the location of fluid distribution during operation.

11. The method of claim 8 , wherein the fluid injection system is disposed within the cartridge.

12. The method of claim 8 , wherein the fluid injection system is disposed external to the cartridge.

13. The method of claim 8 , wherein the one or more side walls comprise one or more layers of wire mesh, PTFE membrane, and fiberglass.

14. A method of generating power comprising: providing hydrogen gas generated according to the method of claim 8 to a fuel cell battery.

15. A hydrogen gas generator comprising:

a cylindrical cartridge, the cylindrical cartridge comprising:

a cylindrical casing comprising a cylindrical outer housing;

a cylindrical internal compartment comprising two circular end caps comprising solid material impermeable to gas flow and a cylindrical side wall configured to be hydrogen-gas permeable and restrictive of liquid and solid material transport;

a hydrogen gas outlet valve in the casing;

a hydrogen gas flow path from an annular volume between the cylindrical side wall and the cylindrical outer housing to the hydrogen gas outlet valve;

a solid reactant material disposed within the internal compartment, said solid reactant material comprising a powder bed of hydrogen containing material capable of releasing hydrogen gas when contacted with water; and

one or more fluid distribution networks disposed within the internal compartment and configured to deliver the water to the solid reactant material; and

a fluid injection system configured to controllably provide the water through at least one circular end cap and into the one or more fluid distribution networks;

wherein the one or more fluid distribution networks comprise two independent spiral-shaped networks spaced axially along the cylindrical internal compartment such that one distributes water to the top of the cylindrical internal compartment while the other network distributes fluid to the bottom of the internal compartment;

wherein the fluid injection system is disposed external to the cartridge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2016
From: KNOBBE, MACK
To: INTELLIGENT ENERGY LIMITED
Reel/Frame 039137/0788 →