IP Library › Granted Patent US 10,617,783
Granted Patent B2
US 10,617,783 · App. 16/271,266 · Granted Apr 14, 2020

Air purification assembly and method of using same

Inventor: Dana Leonaggeo (Pompano Beach, FL)
Assignee: Scientific Air Management, LLC
A61L9/20B01D53/0407A61L2209/11A61L2209/12A61L2209/14A61L2209/22B01D2253/102B01D2257/91B01D2259/4508B01D2259/804
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Quick Facts
Patent No.
US 10,617,783
App. No.
16/271,266
Granted
Apr 14, 2020
Kind
B2
Abstract

An air purification assembly is described. The air purification assembly includes an intake portion, a flow apparatus coupled to the intake portion; and a chamber portion coupled to the flow apparatus. The intake portion includes a surface and at least one first opening in the surface such that the intake portion is enabled to receive contaminated air flow through the at least one first opening. The chamber portion includes at least one second opening and further comprises an activated nonmetallic element and an ultraviolet (UV) light assembly. The flow apparatus is adapted to draw contaminated air into the air purification assembly through the at least one first opening and direct the contaminated air out of the air purification assembly through the second openings.

Claims (33)

1. A method of producing purified air from contaminated air, wherein said method comprises:

receiving a contaminated air flow through a plurality of first openings in a surface of an intake;

channeling the contaminated air flow into the air purification assembly via a flow apparatus that is coupled to the intake;

channeling the contaminated air flow to a chamber portion comprising a bed of activated nonmetallic element and a ultraviolet (UV) light assembly;

purifying the contaminated air flow when the contaminated air flow passes through the bed of activated nonmetallic element and past the ultraviolet (UV) light assembly, wherein said bed of activated nonmetallic element and said ultraviolet (UV) light assembly are adapted so that an upstream surface of the bed of activated nonmetallic element is irradiated by UV light emitted by said ultraviolet light assembly to produce decontaminated air; and

channeling the decontaminated air into a living space.

2. The method in accordance with claim 1 , further comprising channeling the contaminated airflow through a channel that extends from a portion of the intake to a portion of the chamber portion.

3. The method in accordance with claim 1 , wherein the activated nonmetallic element includes charcoal.

4. The method in accordance with claim 1 , wherein channeling the contaminated air flow efficiently through the air purification assembly comprises channeling the contaminated air flow efficiently through the air purification assembly via a cylindrical duct and a blade assembly that is mounted within the cylindrical duct.

5. The method in accordance with claim 1 , wherein channeling the contaminated air flow to a chamber portion comprises channeling the contaminated air flow to a chamber portion that includes an interior surface such that the activated nonmetallic element is positioned on at least a portion of the interior surface.

6. A method of producing purified air from contaminated air, wherein said method comprises:

receiving contaminated air;

channeling the contaminated air to a chamber portion comprising a bed of activated nonmetallic element and a ultraviolet (UV) light assembly;

purifying the contaminated air when the contaminated air is channeled through the bed of activated nonmetallic element, wherein said bed of activated nonmetallic element and said ultraviolet (UV) light assembly are positioned so that at least a portion of the bed of activated nonmetallic element is irradiated by UV light emitted by said ultraviolet light assembly to produce decontaminated air; and

channeling the decontaminated air into a living space.

7. The method in accordance with claim 6 , further comprising channeling the contaminated airflow through a channel that extends into the chamber portion.

8. The method in accordance with claim 6 , wherein the bed of activated nonmetallic element comprises charcoal.

9. The method in accordance with claim 6 , wherein the bed of activated nonmetallic element comprises activated carbon.

10. The method in accordance with claim 6 , wherein channeling the contaminated air flow through the bed of activated nonmetallic element is facilitated by a cylindrical duct and a blade assembly that is mounted within the cylindrical duct.

11. The method in accordance with claim 6 , wherein channeling the contaminated air flow through the bed of activated nonmetallic element comprises channeling the contaminated air flow onto an upstream surface of the bed of activated nonmetallic element and the UV light assembly is positioned to irradiate the upstream surface of at least a portion of the bed of activated nonmetallic element.

12. The method in accordance with claim 11 , wherein the bed of activated nonmetallic element has a tubular shape and the UV light is positioned to irradiate an inner surface of the tubular shape, wherein the inner surface is the upstream surface.

13. A method of producing purified air from contaminated air, wherein said method comprises:

receiving contaminated air;

channeling the contaminated air through a bed of activated nonmetallic element;

purifying the contaminated air when the contaminated air is channeled through the bed of activated nonmetallic element, wherein an ultraviolet (UV) light assembly is positioned so that at least a portion of the bed of activated nonmetallic element is irradiated by UV light emitted by said ultraviolet light assembly to produce decontaminated air; and

channeling the decontaminated air into a living space.

14. The method in accordance with claim 13 , further comprising channeling the contaminated airflow through a channel fluidically coupled to the bed of activated nonmetallic element.

15. The method in accordance with claim 13 , wherein the bed of activated nonmetallic element comprises charcoal.

16. The method in accordance with claim 13 , wherein the bed of activated nonmetallic element comprises activated carbon.

17. The method in accordance with claim 13 , wherein channeling the contaminated air flow through the bed of activated nonmetallic element is facilitated by a cylindrical duct and a blade assembly that is mounted within the cylindrical duct.

18. The method in accordance with claim 13 , wherein channeling the contaminated air flow through the bed of activated nonmetallic element comprises channeling the contaminated air flow onto an upstream surface of the bed of activated nonmetallic element and the UV light assembly is positioned to irradiate the upstream surface of at least a portion of the bed of activated nonmetallic element.

19. The method in accordance with claim 18 , wherein the bed of activated nonmetallic element has a tubular shape and the UV light is positioned to irradiate an inner surface of the tubular shape, wherein the inner surface is the upstream surface.

20. The method in accordance with claim 18 , wherein the decontaminated air exits the bed of activated nonmetallic element through a downstream surface, distinct from the upstream surface.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2022
From: SCIENTIFIC AIR MANAGEMENT, LLC
To: STERILUMEN, INC.
Reel/Frame 061524/0194 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2019
From: LEONAGGEO, DANA
To: SCIENTIFIC AIR MANAGEMENT, LLC
Reel/Frame 048394/0566 →
Continuity (3)
Continuation 14872613 · Oct 1, 2015
Provisional Application 62155630 · May 1, 2015
Related Publication 20190201573A1 · Jul 4, 2019
Cited By (1)
US 12,331,000