IP Library Patent Application 14617582
Patent Application
App. No. 14/617,582

SYSTEM AND METHOD FOR DISINFECTING SURFACES IN A ROOM

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Quick Facts
Patent No.
US None
App. No.
14/617,582
Abstract

A method of neutralizing pathogens includes covering a surface to be disinfected with a coating including one or more types of minutely configured particles having a generally high conductivity. The surface is exposed to electromagnetic waves for a duration of time up to three minutes thereby killing the pathogens.

Claims (33)

1 . A method of neutralizing pathogens in a room occupied by human beings, comprising the steps of:

providing an applicator for dispensing a coating having minutely configured particles;

applying a coating to exposed surfaces in a room that a human being may come into contact with;

placing an electromagnetic wave generator in the room; and,

activating the electromagnetic wave generator thereby exposing the room to electromagnetic energy for a duration of time sufficient to neutralize any associated pathogens on the coated surfaces in the room.

2 . The method as defined in claim 1 , further comprising the step of:

providing a coating comprised of electrically conductive minutely configured particles and a binder that adheres the electrically conductive minutely configured particles onto a surface.

3 . The method as defined in claim 1 , where in the step of providing a coating comprised of electrically conductive minutely configured particles and a binder, comprises the step of:

providing a coating comprised of electrically conductive minutely configured particles, a binder that adheres the electrically conductive minutely configured particles onto a surface and optionally a thickening agent for increasing the viscosity of the coating.

4 . The method as defined in claim 1 , wherein the minutely configured particles comprise minutely configured particles having substantially rounded edges.

5 . The method as defined in claim 4 , wherein the minutely configured particles are comprised of metallic nanoparticles.

6 . The method as defined in claim 4 , wherein the minutely configured particles are comprised of carbon nanoparticles.

7 . The method as defined in claim 1 , where in the step of providing an applicator for dispensing a coating having minutely configured particles, comprises the step of:

providing a pressurized applicator for spraying a coating having minutely configured particles.

8 . The method as defined in claim 1 , where in the step of exposing the room to electromagnetic energy for a duration of time sufficient to neutralize any associated pathogens on the coated surfaces in the room, comprises the step of:

exposing the room to electromagnetic energy for a duration of time less than 3 minutes.

9 . The method as defined in claim 1 , where in the step of exposing the room to electromagnetic energy for a duration of time sufficient to neutralize any associated pathogens on the coated surfaces in the room, comprises the step of:

exposing the room to electromagnetic energy for a duration of time less than 1 minute.

10 . The method as defined in claim 1 , wherein the electromagnetic wave generator is capable of exposing surfaces in the room to electromagnetic energy in the range between 300 MHz and 300 GHz.

11 . The method as defined in claim 1 , further comprising the step of:

providing a mobile electromagnetic wave generator attached to a base having wheels, wherein the electromagnetic wave generator is capable of being rolled into and out of the room.

12 . The method as defined in claim 11 , wherein the mobile electromagnetic wave generator includes a standard electrically conductive wall outlet plug; and,

where in the mobile electromagnetic wave generator draws power to expose the room to electromagnetic energy from an associated standard electrically conductive wall outlet.

13 . The method as defined in claim 1 , further comprising the step of:

providing a surface temperature sensor capable of measuring the temperature of a surface in the room covered with the coating; and,

monitoring the temperature of the surface in the room.

14 . The method as defined in claim 13 , where in the step of:

exposing the room to electromagnetic energy for a duration of time sufficient to neutralize any associated pathogens on the coated surfaces in the room, comprises the step of:

exposing the room to electromagnetic energy until the monitored temperature of the surface in the room exceeds the temperature necessary to kill Clostridium difficile bacteria.

15 . The method as defined in claim 13 , further comprising the step of:

providing a controller operatively communicated to the surface temperature sensor and operatively connected to deactivate the electromagnetic wave generator;

communicating data from the surface temperature sensor to the controller; and,

automatically deactivating the electromagnetic wave generator when data from the surface temperature sensor equals a predetermined threshold surface temperature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2016
From: PELFREY, KEITH ALLEN
To: GOJO INDUSTRIES, INC.
Reel/Frame 037978/0153 →