IP Library Granted Patent US 7,431,084
Granted Patent B1
US 7,431,084 · App. 11/519,688 · Granted Oct 7, 2008

Production of hydrogen from underground coal gasification

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Quick Facts
Patent No.
US 7,431,084
App. No.
11/519,688
Granted
Oct 7, 2008
Kind
B1
Abstract

A system of obtaining hydrogen from a coal seam by providing a production well that extends into the coal seam; positioning a conduit in the production well leaving an annulus between the conduit and the coal gasification production well, the conduit having a wall; closing the annulus at the lower end to seal it from the coal gasification cavity and the syngas; providing at least a portion of the wall with a bifunctional membrane that serves the dual purpose of providing a catalyzing reaction and selectively allowing hydrogen to pass through the wall and into the annulus; and producing the hydrogen through the annulus.

Claims (28)

1. An apparatus for producing hydrogen from an underground coal gasification production well, comprising:

a conduit adapted to be positioned in the underground coal gasification production well,

an annulus between said conduit and the underground coal gasification production well,

at least a portion of said conduit being a bifunctional membrane that serves the dual purpose of providing a catalyzing reaction and selectively allowing hydrogen to pass into said annulus for production.

2. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 including a source of vacuum connected to said annulus.

3. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said conduit forms the inside wall of a double-walled production well.

4. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said membrane is a hydrophobic silica membrane.

5. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said membrane is a porous ceramic membrane.

6. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said membrane is a palladium-coated membrane.

7. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said membrane is a palladium coating on a high permeability alloy tube membrane.

8. The apparatus for obtaining hydrogen from an underground coal gasification production well of claim 1 wherein said bifunctional membrane serves as a catalyst for a water-gas shift reaction.

9. An apparatus for the underground coal gasification production of hydrogen, comprising:

a double-walled production well having

an outer conduit,

an inner conduit with a wall, wherein at least a portion of said wall is made of a bifunctional membrane that serves the dual purpose of providing a catalyzing reaction and selectively allowing hydrogen to pass through said wall, and

an annulus between said inner conduit and said outer conduit.

10. The apparatus for the underground coal gasification production of hydrogen of claim 9 including a source of vacuum connected to said annulus for producing the hydrogen through said annulus.

11. The apparatus for the underground coal gasification production of hydrogen of claim 9 wherein said membrane is a hydrophobic silica membrane.

12. The apparatus for the underground coal gasification production of hydrogen of claim 9 wherein said membrane is a porous ceramic membrane.

13. The apparatus for the underground coal gasification production of hydrogen of claim 9 wherein said membrane is a palladium-coated membrane.

14. The apparatus for the underground coal gasification production of hydrogen of claim 9 wherein said membrane is a palladium coating on a high permeability alloy tube membrane.

15. The apparatus for the underground coal gasification production of hydrogen of claim 9 wherein said bifunctional membrane serves as a catalyst for a water-gas shift reaction.

16. A method of obtaining hydrogen from a coal seam in an underground coal gasification system, comprising the steps of:

providing a production well that extends into the coal seam;

positioning a conduit in said production well leaving an annulus between said conduit and said coal gasification production well, said conduit having a wall;

providing at least a portion of said wall with a bifunctional membrane that serves the dual purpose of providing a catalyzing reaction and selectively allowing hydrogen to pass through said wall and into said annulus; and

producing said hydrogen through said annulus.

17. A method of obtaining hydrogen from a coal seam in an underground coal gasification system of claim 16 including the step of providing a vacuum connected to said annulus for producing the hydrogen through said annulus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2016
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 038164/0784 →