IP Library Patent Application 17989822
Patent Application
App. No. 17/989,822

Chamber Disinfection Devices Using Nebulized Fluid And Plasma

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Quick Facts
Patent No.
US None
App. No.
17/989,822
Abstract

Disinfection devices are provided which include an enclosure comprising an interior cavity, a closable loading port for providing access to the interior cavity, a cold plasma generator, a fan, a nebulizer and optionally a heating element to heat the interior cavity. In some cases, the cold plasma generator, the fan, and the nebulizer are arranged in the disinfection device such that plasma species generated by the cold plasma generator are routed to an area to which droplets formed by the nebulizer are discharged and the interior cavity is exposed to a mixture of the droplets and the plasma species. In some additional or alternative cases, the disinfection device includes an electronic control system comprising a processor and a storage medium comprising program instructions executable by the processor for terminating operation of the cold plasma generator after a set time period subsequent to terminating operation of the nebulizer.

Claims (59)

1 . A disinfection device, comprising:

an enclosure comprising an interior cavity;

a closable loading port for providing access to the interior cavity;

a chamber distinct from the interior cavity and having an air inlet and air outlet respectively coupled to an outlet and an inlet of the interior cavity for providing airflow between the chamber and the interior cavity;

a cold plasma generator disposed in the chamber;

a fan arranged within or in proximity to the outlet of the interior chamber such that air from the interior cavity is forced through the air inlet of the chamber and routed to the cold plasma generator; and

a nebulizer, wherein the cold plasma generator, the fan, and the nebulizer are arranged in the disinfection device such that:

plasma species generated by the cold plasma generator are routed to an area to which droplets formed by the nebulizer are discharged; and

the interior cavity is exposed to a mixture of the droplets and the plasma species.

2 . The disinfection device of claim 1 , wherein the nebulizer is arranged in the chamber downstream from the cold plasma generator.

3 . The disinfection device of claim 1 , wherein the nebulizer is arranged in the interior cavity.

4 . The disinfection device of claim 3 , wherein the nebulizer is arranged within 12 inches of the air outlet of the chamber and such that a nozzle of the nebulizer discharges droplets toward an area in the interior cavity adjacent the air outlet of the chamber.

5 . The disinfection device of claim 1 , further comprising an additional chamber distinct from the interior cavity, wherein the nebulizer is arranged in the additional chamber, and wherein the additional chamber comprises a fluid outlet for passing droplets formed by the nebulizer into the interior cavity.

6 . The disinfection device of claim 5 , wherein the air outlet of the chamber in which the cold plasma generator is arranged and the fluid outlet of the additional chamber are configured in the disinfection device to direct their discharge to a common area in the interior cavity which is within approximately 12 inches of each of the air outlet and the fluid outlet.

7 . The disinfection device of claim 1 , wherein the nebulizer is configured and arranged in the disinfection device such that droplets having a diameter of 10 microns or greater are discharged into the interior cavity.

8 . The disinfection device of claim 1 , further comprising an electronic control system comprising a processor and a storage medium comprising program instructions executable by the processor for:

activating the fan;

activating the cold plasma generator;

activating the nebulizer;

terminating operation of the nebulizer; and

terminating operation of the cold plasma generator after a set time period subsequent to terminating operation of the nebulizer.

9 . A disinfection device, comprising:

an enclosure comprising an interior cavity;

a closable loading port for providing access to the interior cavity;

a cold plasma generator, wherein the disinfection device is configured such that plasma species generated by the cold plasma generator are discharged in the interior cavity;

a nebulizer, wherein the disinfection device is configured such that droplets generated by the nebulizer are discharged in the interior cavity;

a fan arranged in the disinfection device to move air, the plasma species and the droplets in the disinfection device; and

an electronic control system comprising a processor and a storage medium comprising program instructions executable by the processor for:

activating the fan;

activating the cold plasma generator;

activating the nebulizer;

terminating operation of the nebulizer; and

terminating operation of the cold plasma generator after a set time period subsequent to terminating operation of the nebulizer.

10 . The disinfection device of claim 9 , wherein the set time period is between approximately 5 minutes and approximately 15 minutes.

11 . The disinfection device of claim 9 , wherein the program instructions for terminating the operation of the nebulizer comprises terminating the operation of the nebulizer while maintaining operation of the fan and the cold plasma generator.

12 . The disinfection device of claim 9 , wherein the storage medium further comprises program instructions executable by the processor for:

terminating operation of the cold plasma generator prior to or at the same time as the step of terminating operation of the nebulizer;

reactivating the cold plasma generator, wherein the step of terminating operation of the cold plasma generator after a set time period subsequent to terminating operation of the nebulizer comprises terminating operation of the reactivated cold plasma generator; and

maintaining operation of the fan between the steps of terminating operation and reactivating the cold plasma generator.

13 . The disinfection device of claim 9 , further comprising a heating element arranged in the disinfection device to heat the interior cavity, wherein the storage medium further comprises program instructions executable by the processor for activating the heating element at the same time or subsequent to the step of terminating operation of the cold plasma generator.

14 . The disinfection device of claim 9 , wherein the program instructions for activating the fan comprise program instructions for activating the fan to operate at a flow rate of at least 0.3 m 3 per minute.

15 . A disinfection device, comprising:

an enclosure comprising an interior cavity;

a closable loading port for providing access to the interior cavity;

a chamber distinct from the interior cavity and having an air inlet and air outlet respectively coupled to an outlet and an inlet of the interior cavity for providing airflow between the chamber and the interior cavity;

a cold plasma generator disposed in the chamber;

a fan arranged within or in proximity to the outlet of the interior chamber such that air from the interior cavity is forced through the air inlet of the chamber and routed to the cold plasma generator and that plasma species generated by the cold plasma generator are discharged into the interior cavity;

a nebulizer arranged in the disinfection device such that droplets formed by the nebulizer are discharged in the interior cavity; and

a heating element to heat the interior cavity.

16 . The disinfection device of claim 15 , wherein the heating element and the disinfection device are configured to raise and maintain a temperature in the interior cavity to be between approximately 40° C. and approximately 60° C. for a predetermined amount of time.

17 . The disinfection device of claim 16 , further comprising an electronic control system comprising a processor and a storage medium, wherein the storage medium comprises program instructions executable by the processor for:

activating the cold plasma generator;

terminating operation of the cold plasma generator; and

activating the heating element at the same time or subsequent to the step of terminating operation of the cold plasma generator.

18 . The disinfection device of claim 17 , wherein the storage medium further comprises program instructions executable by the processor for:

activating the nebulizer; and

terminating operation of the nebulizer prior to the step of terminating the cold plasma generator.

19 . The disinfection device of claim 15 , wherein the nebulizer is configured to generate microdroplets having a mean diameter of approximately 5 μm or less.

20 . The disinfection device of claim 15 , wherein the interior cavity comprises a volume between approximately 0.1 liters and approximately 100 liters.

Assignments (5)
ASSIGNMENT AND ASSUMPTION OF SECURITY AGREEMENT, IP SECURITY AGREEMENT AND COLLATERAL AGENT AGREEMENT Recorded May 26, 2026
From: MALIN LIFE SCIENCES HOLDINGS LIMITED
To: XDS COLLATERAL, LLC
Reel/Frame 075626/0146 →
ASSIGNMENT AND ASSUMPTION OF SECURITY AGREEMENT, IP SECURITY AGREEMENT AND COLLATERAL AGENT AGREEMENT Recorded Mar 2, 2026
From: MALIN LIFE SCIENCES (US), INC.
To: MALIN LIFE SCIENCES HOLDINGS LIMITED
Reel/Frame 075060/0415 →
SECURITY INTEREST Recorded Feb 13, 2025
From: XENEX DISINFECTION SERVICES INC.
To: MALIN LIFE SCIENCES (US), INC.
Reel/Frame 070629/0867 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2022
From: FRIDMAN, GREGORY
To: AA PLASMA LLC.
Reel/Frame 061820/0563 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2022
From: AA PLASMA LLC.
To: XENEX DISINFECTION SERVICES INC.
Reel/Frame 061820/0618 →