IP Library › Granted Patent US 7,171,964
Granted Patent B2
US 7,171,964 · App. 10/865,455 · Granted Feb 6, 2007

Instant chemical based flexible oxygen in a non-pressurized flexible or rigid containment system

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Quick Facts
Patent No.
US 7,171,964
App. No.
10/865,455
Granted
Feb 6, 2007
Kind
B2
Abstract

The invention is a portable, non-pressurized oxygen generation device. A first chamber holds an oxygen liberating chemical, and a catalyst from a second chamber begins the oxygen liberating reaction when the two chemicals mix. The chemicals are pre-measured, and oxygen generation can begin within seconds of activation.

Claims (36)

1. A portable oxygen generating system for providing breathing oxygen said system comprising:

a reaction chamber containing a pre-measured volume of a first reaction material which partially fills said reaction chamber;

a second chamber adjacent to said reaction chamber, containing a pre-measured volume of a second reaction material, said first and second materials selected so that oxygen is generated when said first material and said second materials are mixed;

an oxygen release tube positioned within said reaction chamber to be above the level of said first material, when the reaction chamber is in any spatial orientation;

an activation means, which is configured to immediately activate oxygen generation by opening said second chamber to allow immediate mixing of said second material with said first material, resulting in immediate and continuous oxygen production from mixing and subsequent reaction; and

a delivery device configured to deliver oxygen created within said reaction chamber to a user;

wherein said portable oxygen generating system is configured for activation and operation in any spatial orientation.

2. The portable oxygen generating system of claim 1 in which said reaction chamber is a semi rigid material.

3. The portable oxygen generating system of claim 2 in which said second chamber is a breakable ampule containing said second reaction material.

4. The portable oxygen generating system of claim 3 in which said ampule is supported in an ampule bracket within the reaction chamber.

5. The portable oxygen generating system of claim 3 in which said activator means is a device for breaking the ampule.

6. The portable oxygen generating system of claim 5 in which the device for breaking the ampule is a plunger pin.

7. The portable oxygen generating system of claim 6 in which the device for breaking the ampule is spring loaded.

8. The portable oxygen generating system of claim 6 in which the device for breaking the ampule has a locking device for preventing unwanted activation.

9. The portable oxygen generating system of claim 1 , which further includes an external carrying pouch for storing and transporting, and as a heat shield for said portable oxygen generating system.

10. The portable oxygen generating system of claim 1 in which said oxygen release tube extends from a reaction chamber wall to the approximate center of the reaction vessel, and includes a tube opening, and because said first material only partially fills said reaction vessel, said tube opening remains above the level of the first material when the reaction vessel is in any spatial orientation.

11. The portable oxygen generating system of claim 10 in which said oxygen release tube is attached at one end to said reaction chamber wall.

12. The portable oxygen generating system of claim 1 in which said reaction chamber is a flexible pouch enclosed in a semi-rigid external case.

13. The portable oxygen generating system of claim 12 in which said second chamber is a chamber in a flexible pouch, and said reaction chamber is a chamber in said flexible pouch.

14. The portable oxygen generating system of claim 12 in which the activation means is a seal between the second chamber and said reaction chamber, which is opened by squeezing the flexible pouch.

15. The portable oxygen generating system of claim 12 in which said oxygen release tube extends from a reaction chamber wall to the approximate center of the reaction vessel, and includes a tube opening, and because said first material only partially fills said reaction vessel, said tube opening remains above the level of the first material when the reaction vessel is in any spatial orientation.

16. The portable oxygen generating system of claim 15 in which the oxygen release tube is a flexible tube that includes a float.

17. The portable oxygen generating system of claim 1 in which said reaction chamber is a flexible pouch.

18. The portable oxygen generating system of claim 1 wherein said delivery device further comprises: a conduit having a first end configured for connection to said air release tube and a second end configured to attachment to an oxygen delivery mask.

19. The portable oxygen generating system of claim 18 wherein said delivery device further comprises a chemical filter located within said conduit between said first end and said second end, said chemical filter configured to allow passage of oxygen from a flexible bladder to said mask and to prevent passage of other gases or odors from said bladder through said conduit.

20. The portable oxygen generating system of claim 18 wherein said delivery device further comprises a hydrophobic filter located within said conduit between said first end and said second end, said hydrophobic filter configured to allow passage of oxygen from a flexible bladder to said mask and to prevent passage of liquid from said bladder through said conduit.

21. The portable oxygen generating system of claim 12 wherein said delivery device further comprises a chemical filter located within said conduit between said first end and said second end, said chemical filter configured to allow passage of oxygen from said flexible bladder to said mask and to prevent passage of other gases or odors from said bladder through said conduit.

22. The portable oxygen generating system of claim 19 in which said chemical filter contains activated charcoal, for absorption of odors and gases other than oxygen.

23. The portable oxygen generating system of claim 1 wherein said first material is selected liquid from the group of compounds comprising sodium percarbonate, hydrogen peroxide, potassium percarbonate, and distilled water.

24. The portable oxygen generating system of claim 1 wherein said second material is a catalyst selected from the group comprising manganese, dioxide, charcoal, and rare earth metals.

25. The portable oxygen generating system of claim 1 in which said first material is hydrogen peroxide.

26. The portable oxygen generating system of claim 25 in which said hydrogen peroxide is a solution of 5–10% peroxide.

27. The portable oxygen generating system of claim 24 wherein said second material is manganese dioxide powder.

28. The portable oxygen generating system of claim 18 wherein said delivery device further comprises a humidifier chamber positioned between said hydrophobic chamber and said flexible bladder.

29. The portable oxygen generating system of claim 28 wherein said delivery device further comprises a check valve positioned between said humidifier chamber and said flexible bladder.

30. The portable oxygen generating system of claim 29 wherein said delivery device further comprises a tubing clamp positioned between said check valve and said flexible bladder said tubing valve configured to control the flow of oxygen out of said flexible bladder.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2005
From: MOORE, BERT
To: OX-GEN, INC.
Reel/Frame 015760/0344 →
Continuity (4)
Provisional Application 6055880900 · Apr 1, 2004
Provisional Application 6056453900 · Apr 21, 2004
Provisional Application 6047745200 · Jun 9, 2003
Related Publication 20050022810A1 · Feb 3, 2005