IP Library Granted Patent US 11,986,567
Granted Patent B2
US 11,986,567 · App. 18/097,297 · Granted May 21, 2024

Plasma treatment device and method of treating a surface

Inventors: Julius Regalado (Gainesville, FL); Xin Zhou (Gainesville, FL); Kenneth Cherisol (Lake Mary, FL); Miles Clark (Lake Helen, FL)
Assignee: BLUEWAVE TECHNOLOGIES, INC.
A61L2/14A61L2/10A61L2/22A61L2/18A61L2/186A61L2202/122A61L2202/14A61L2202/16A61L2202/26
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Quick Facts
Patent No.
US 11,986,567
App. No.
18/097,297
Granted
May 21, 2024
Kind
B2
Abstract

The use of plasma to clean or sterilize items can be particularly advantageous for items that cannot be readily washed or cleaned by standard methods. The toxicity and complications generating sufficient plasma makes it hard to use for such purposes. The subject invention addresses the problem by generating a minimal amount of highly reactive plasma to sterilize an item. This is achieved by reducing the amount of space and ambient air around and within the item. In this way, the plasma generated fills only the required volume of the item to be cleaned and the plasm is directed at the object, not directed at or released into non-target areas.

Claims (24)

1. A treatment device comprising:

a treatment chamber, configured to treat a surface to kill microbes and/or reduce odor, the treatment chamber comprising at least one conformable wall for forming a volume in which to receive the surface;

at least one pump operably connected to the treatment chamber, such that at least a portion of ambient air in the treatment chamber is removable by the at least one pump, thereby creating a negative pressure causing the conformable wall to collapse and at least partially conform to the surface, so as to reduce the volume of the treatment chamber, such that there is a working volume of air in the treatment chamber;

an effluent chamber that receives, by the at least one pump, and sequesters the ambient air removed from the treatment chamber;

a secondary effluent chamber that receives, by the at least one pump, at least a portion of the working volume from the treatment chamber and from which the at least one pump moves the working volume to the treatment chamber; and

an aerosolizing mechanism comprising a nozzle and a reservoir, configured to contain a material,

such that, when the at least one pump moves the working volume into the treatment chamber, the nozzle aerosolizes the material, which is incorporated into the working volume and carried into the treatment chamber to treat the surface.

2. The treatment device, according to claim 1 , wherein the material in the reservoir comprises a disinfectant.

3. The treatment device, according to claim 2 , wherein the disinfectant comprises at least one of hydrogen peroxide and an alcohol.

4. The treatment device, according to claim 1 , further comprising at least one filter positioned such that the portion of ambient air removed from the treatment chamber passes through the at least one filter.

5. The treatment device, according to claim 1 , further comprising the at least one pump configured to repeat at least once moving the working volume from the treatment chamber to the effluent chamber and returning the working volume to the treatment chamber passing the aerosolizing mechanism to incorporate aerosolized material into the working volume when moved into the treatment chamber.

6. The treatment device, according to claim 1 , further comprising a plasma generator positioned such that the working volume in the secondary effluent chamber passes through the plasma generator when moved into the treatment chamber, whereby at least a portion of the working volume moving into the treatment chamber is converted to plasma and the material and the material in the reservoir is water, such that, when the working volume is moved into the treatment chamber, the plasma converts the aerosolized water to hydrogen peroxide to treat the surface.

7. A treatment device comprising:

a treatment chamber, configured to treat a surface to kill microbes and/or reduce odor, the treatment chamber comprising at least one conformable wall for forming a volume in which to receive the surface;

at least one pump operably connected to the treatment chamber,

a vacuum reservoir for holding a negative pressure level, generated by the at least one pump, and a valve between the vacuum reservoir and the treatment chamber, such that when the valve is opened the pressure differential between the vacuum reservoir and the treatment chamber causes at least a portion of ambient air in the treatment chamber to move into the vacuum reservoir causing the conformable wall to collapse and at least partially conform to the surface, so as to reduce the volume of the treatment chamber, wherein when the pressure differential between the vacuum reservoir and when the treatment chamber reaches equilibrium the valve is closed and there remains a working volume of air in the treatment chamber;

an effluent chamber that receives, by the at least one pump, at least a portion of the working volume from the treatment chamber and from which the at least one pump returns the working volume to the treatment chamber;

a plasma generator positioned such that the working volume in the effluent chamber passes through the plasma generator when moved into the treatment chamber, whereby at least a portion of the working volume moving into the treatment chamber is converted to plasma; and

an aerosolizing mechanism comprising a nozzle and a reservoir, configured to contain a material,

such that, when the at least one pump moves the working volume into the treatment chamber, the nozzle aerosolizes the material, which is carried by the working volume into the treatment chamber with the plasma to treat the surface.

8. The treatment device, according to claim 7 , wherein the material in the reservoir comprises a disinfectant.

9. The treatment device, according to claim 8 , wherein the disinfectant is hydrogen peroxide, water, or an alcohol.

10. The treatment device, according to claim 7 , wherein the pump repeats, at least once, generating a negative pressure level in the vacuum reservoir, such that when the valve is reopened the pressure differential between the vacuum reservoir and the treatment chamber causes further ambient air in the treatment chamber to move into the vacuum reservoir such that the conformable wall further collapses and further conforms to the surface, so as to further reduce the volume of the treatment chamber, wherein when the pressure differential between the vacuum reservoir and when the treatment chamber reaches equilibrium the valve is closed and there remains the working volume of air in the treatment chamber.

11. The treatment device according to claim 7 , further comprising the at least one pump being configured to move the working volume in the treatment chamber to the at least one effluent chamber and passing the plasma generator, such that at least a portion of the working volume is converted to plasma, thereby increasing the concentration of plasma in the effluent chamber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2023
From: REGALADO, JULIUS; ZHOU, XIN; CHERISOL, KENNETH; CLARK, MILES
To: IVY CREATIVE LABS, INC.
Reel/Frame 062380/0432 →
MERGER Recorded Jan 16, 2023
From: IVY CREATIVE LABS, INC.
To: BLUEWAVE TECHNOLOGIES, INC.
Reel/Frame 062380/0442 →
Continuity (5)
Continuation 17074664 · Oct 20, 2020
Division 15537961
Provisional Application 62129533 · Mar 6, 2015
Provisional Application 62095629 · Dec 22, 2014
Related Publication 20230211029A1 · Jul 6, 2023