Claims
- 1. Apparatus for storing hydrogen storage material under pressure, said apparatus comprising:
a pressure containment vessel defining an interior volume having a horizontal axis; a hydrogen storage alloy occupying at least a portion of said interior volume of said pressure containment vessel, a plurality of adjacent cells positioned horizontal to said horizontal axis throughout said pressure containment vessel having a cell wall, an open top, and an open bottom, said block operatively disposed in at least a portion of said interior volume of said pressure containment vessel and adapted to receive hydrogen storage alloy therein; and a plurality of mass transfer hydrogen diffusion channels extending parallel to said horizontal axis of said pressure containment vessel contained within each of said cells.
- 2. The apparatus according to claim 1, wherein said plurality of adjacent cells form at least one honeycomb block inside said pressure containment vessel.
- 3. The apparatus according to claim 2, wherein said honeycomb blocks are in thermal contact with said vessel.
- 4. The apparatus according to claim 3, wherein said honeycomb blocks have a disc or polygonal shape.
- 5. The apparatus according to claim 1, wherein said cell walls are shared between said cells.
- 6. The apparatus according to claim 1, wherein said cells have a diameter up to 25 mm.
- 7. The apparatus according to claim 6, wherein said cells have a diameter between 3 mm and 7 mm.
- 8. The apparatus according to claim 1, wherein said cells have a circular cross section.
- 9. The apparatus according to claim 1, wherein said cells have a polygonal cross section.
- 10. The apparatus according to claim 1, wherein said cells are comprised of a thermally conductive metal able to withstand the operating temperatures and pressures inside said vessel having negligible reactivity with said hydrogen and said hydrogen storage alloy.
- 11. The apparatus according to claim 10, wherein said thermally conductive metal is selected from a group consisting of stainless steel, Al, Mg, Cu and alloys or mixtures thereof.
- 12. The apparatus according to claim 11, wherein said cells are comprised of an aluminum alloy.
- 13. The apparatus according to claim 2, wherein at least one heat exchanger tube adapted to thermally treat said interior volume of said vessel is inserted through said block.
- 14. The apparatus according to claim 16, wherein said heat exchanger tubes extend the entire length of said pressure containment vessel.
- 15. The apparatus according to claim 14, wherein said cells are configured to conform to the shape of said heat exchanger tubes once said heat exchanger tubes are inserted through said cells.
- 16. The apparatus according to claim 13, wherein said heat exchanger tubes are coated with thermally conductive grease or oil.
- 17. The apparatus according to claim 13, wherein said heat exchanger tubes carry a heat exchanger liquid.
- 18. The apparatus according to claim 17, wherein said heat exchanger liquid is water, ethylene glycol, or a mixture thereof.
- 19. The apparatus according to claim 17, wherein said heat exchanger liquid enters said vessel and is distributed to said one or more heat exchanger tubes with a manifold.
- 20. The apparatus according to claim 19 wherein said heat exchanger liquid flowing through said heat exchanger tubes is combined inside said vessel to form a single stream exiting said vessel.
- 21. The apparatus according to claim 13, wherein said heat exchanger tubes are comprised of aluminum, stainless steel, or another conductive metal.
- 22. The apparatus according to claim 1, wherein said cells form a corrugated material.
- 23. The apparatus according to claim 22, wherein said corrugated material is comprised of a thermally conductive metal able to withstand the operating temperatures and pressures inside said vessel having negligible reactivity with said hydrogen and said hydrogen storage alloy.
- 24. The apparatus according to claim 23, wherein said thermally conductive metal is selected from a group consisting of stainless steel, Al, Mg, Cu and alloys or mixtures thereof.
- 25. The apparatus according to claim 29, wherein said thermally conductive metal is an aluminum alloy.
- 26. The apparatus according to claim 1, wherein said vessel is comprised of aluminum, stainless steel, other metals, alloys thereof, polymers, or composites.
- 27. The apparatus according to claim 1, wherein said vessel is formed around said blocks making said vessel seamless.
- 28. The apparatus according to claim 1, wherein said vessel is wrapped in a fiber reinforced composite material.
- 29. The apparatus according to claim 28, wherein said fiber reinforced composite material is a carbon fiber.
- 30. The apparatus according to claim 28, wherein said fiber reinforced composite material is a glass fiber.
- 31. The apparatus according to claim 1, wherein said vessel comprises a first section and a second section.
- 32. The apparatus according to claim 31, wherein said blocks are placed in said first section and said second section is welded to said first section forming a seam in said vessel.
RELATED APPLICATIONS
[0001] The present invention is a continuation-in-part of co-pending U.S. patent application Ser. No. 10/143,243, which is assigned to the same assignee as the current application, entitled “A Honeycomb Hydrogen Storage Structure”, filed May 9, 2002, the disclosure of which is hereby incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10143243 |
May 2002 |
US |
Child |
10209046 |
Jul 2002 |
US |