IP Library › Granted Patent US 10,398,796
Granted Patent B2
US 10,398,796 · App. 15/214,025 · Granted Sep 3, 2019

Gas generation module

Inventors: Majdi F. Shomali (Arlington, VA); James E. Bernstein (Washington, DC); David B. Opie (Severna Park, MD); Alind Sahay (West Chester, PA); Jeffrey C. Soreide (Baltimore, MD)
Assignees: ENIWARE, LLC; NOXILIZER, INC.
A61L2/20A01N25/34A01N59/00A61L9/046A61L9/12C01B21/36A61L9/145A61L2202/11A61L2202/13A61L2202/16A61L2202/25A61L2209/14
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Quick Facts
Patent No.
US 10,398,796
App. No.
15/214,025
Granted
Sep 3, 2019
Kind
B2
Abstract

A sterilant source for use in a portable sterilant system includes a gas-impermeable vial, a frangible ampule containing a first sterilant gas precursor material, disposed within the gas-impermeable vial, a second sterilant gas precursor material, disposed within the gas-impermeable vial and outside the ampule. The first and second sterilant gas precursor materials are selected to be mutually reactive to generate a sterilant gas. The system further includes an activation mechanism, actuatable to break the frangible ampule to release the first sterilant gas precursor material to allow it to react with the second sterilant gas precursor material to generate the sterilant gas.

Claims (22)

1. A sterilant gas generating module, comprising:

a gas-impermeable vial;

a frangible ampule containing a first sterilant gas precursor material, disposed within the gas-impermeable vial;

a second sterilant gas precursor material, disposed within the gas-impermeable vial and outside the ampule, the first and second sterilant gas precursor materials being selected to be mutually reactive to generate a sterilant gas; and

an activation mechanism, configured and arranged to be actuatable to break the frangible ampule to release the first sterilant gas precursor material to allow it to react with the second sterilant gas precursor material to generate the sterilant gas wherein the activation mechanism comprises a movable cap, configured to close an end of the gas-impermeable vial and to be slidably movable with respect to the vial such that when a force is applied to the movable cap the force is transmitted to the frangible ampoule to fracture it.

2. A sterilant gas generating module as in claim 1 , wherein:

the first sterilant gas precursor material comprises an aqueous acid solution and the second sterilant gas precursor material comprises a metallic material.

3. A sterilant gas generating module as in claim 1 , wherein the mutual reaction between the first and second sterilant gas generating materials is an exothermic reaction and a reaction product includes water such that the mutual reaction produces water vapor in addition to the sterilant gas.

4. A sterilant gas generating module as in claim 1 , wherein the sterilant gas is NO 2 .

5. A sterilant gas generating module as in claim 1 , wherein the activation mechanism comprises:

a pin, disposed in displaced relation from the ampoule; and

a resilient member, configured and arranged to bias the ampoule away from the pin, wherein

such that when the force is applied to the movable cap, the frangible ampoule is pressed against the pin to fracture the ampoule.

6. A sterilant gas generating module as in claim 1 , wherein the first sterilant gas precursor material comprises nitric acid and the second sterilant gas precursor material comprises a copper foil.

7. A sterilant gas as in claim 1 , further comprising an emulsifier selected to improve mixing between the first and second sterilant gas precursor materials.

8. A sterilant gas generating module, comprising:

a gas-impermeable vial;

a container containing a first sterilant gas precursor material, disposed within the gas-impermeable vial;

a second sterilant gas precursor material, disposed within the gas-impermeable vial and outside the container, the first and second sterilant gas precursor materials being selected to be mutually reactive to generate a sterilant gas; and

a movable cap, configured and arranged to close an end of the gas-impermeable vial and to be slidably movable with respect to the vial such that when a force is applied to the movable cap, the force is transmitted to create an aperture in the container to allow the first sterilant gas precursor material to react with the second sterilant gas precursor material to generate the sterilant gas.

9. A sterilant gas generating module as in claim 8 , wherein the container comprises a septum.

10. A sterilant gas generating module as in claim 9 , further comprising a stop, configured to inhibit movement of the movable cap up to a threshold force sufficient to push a snap fit portion of the cap past the stop to allow the force to be transmitted to the septum to create the aperture.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2016
From: SHOMALI, MAJDI F.; BERNSTEIN, JAMES E.; OPIE, DAVID B.; SAHAY, ALIND; SOREIDE, JEFFREY C.
To: ENIWARE, LLC; NOXILIZER, INC.
Reel/Frame 039190/0740 →
Continuity (1)
Related Publication 20180021466A1 · Jan 25, 2018
Cited By (3)
US 12,649,031 US 12,708,681 US 12,746,301