IP Library Granted Patent US 10,882,055
Granted Patent B2
US 10,882,055 · App. 15/790,525 · Granted Jan 5, 2021

Ionization air purification system for the passenger cabin of a vehicle

Inventors: Anthony M. Abate (Seymour, CT); Hal Ross Gurman (Scottsdale, AZ)
Assignee: CLEAN AIR GROUP, INC.
B03C3/68A61L9/22B01D46/0078B03C3/41B60H1/00371B60H3/0078B60H3/0633B61D27/00B64D13/00H01T23/00A61L2209/11A61L2209/111A61L2209/14A61L2209/16A61L2209/21B01D46/0028B03C2201/04B03C2201/30B64D2013/067
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Quick Facts
Patent No.
US 10,882,055
App. No.
15/790,525
Granted
Jan 5, 2021
Kind
B2
Abstract

An ionization air purification system for the passenger cabin of vehicles, which modifies the degree of ionization by modifying the energy levels applied to an air ionization device having a tubular dielectric member or a planar dielectric member or ionization source proportional to the change in air flow dynamics and air quality. In one embodiment, an ionization air purification system for the passenger cabin of a vehicle is disclosed. The system includes an ionization device for purifying the air prior to entering into the passenger cabin of the vehicle while minimizing the production of ozone as a by-product; and means for modifying the degree of ionization by modifying the energy levels applied to the ionization tube or ionization source proportional to the change in air flow dynamics or air quality.

Claims (25)

1. An ionization air purification system for a passenger cabin of a vehicle comprising:

an air ionization device for purifying an air stream while minimizing production of ozone as a by-product; and

a control device configured to adjust a degree of ionization by modifying energy levels applied to the ionization device;

wherein the air ionization device incorporates a glass or fiberglass dielectric member positioned between an anode and a cathode;

wherein the air ionization device is configured to produce balanced quantities of both positive ions and negative ions occurring alternately so that the ions are dispersed in an alternate fashion to avoid re-combination and opportunity to form ozone;

wherein the air ionization device is configured to operate at a voltage in a range of 1,350-4,500 VAC (volts alternating current) to minimize a conversion by free electrons of dioxygen to ozone,

wherein in a first mode of operation, the control device is configured to control the passage of the air stream through the air ionization device to remove contaminants prior to entering into the passenger cabin of the vehicle, and to adjust the degree of ionization by modifying the energy levels applied to the ionization device proportional to a change in air flow dynamics and air quality; and

wherein in a second mode of operation, the control device is configured to operate the air ionization device for a predetermined period of time with the vehicle turned off and with an air blower for the air stream turned off, in order to allow a concentration of ions from the air ionization device to interact with microbial contaminants in a cabin air filter.

2. The ionization air purification system of claim 1 , wherein the vehicle is a passenger automobile.

3. The ionization air purification system of claim 2 , wherein the air ionization device is mounted within a plenum chamber located within an engine compartment of the passenger automobile.

4. The ionization air purification system of claim 2 , wherein the air ionization device is mounted within an auxiliary mounting chamber that is adapted for use with a recirculating air flow stream within the passenger cabin.

5. The ionization air purification system of claim 1 , wherein the vehicle is a passenger bus.

6. The ionization air purification system of claim 1 , wherein the vehicle is a passenger train.

7. The ionization air purification system of claim 1 , wherein the vehicle is a passenger plane.

8. The ionization air purification system of claim 1 , wherein the dielectric member is a tube.

9. The ionization air purification system of claim 8 , wherein the air ionization device is electrically coupled to an on-board electrical system that operates in the vehicle.

10. The ionization air purification system of claim 9 , further comprising a switch for selectively activating the air ionization device.

11. The ionization air purification system of claim 1 , wherein the dielectric member is a flat board.

12. The ionization air purification system of claim 11 , wherein the air ionization device is electrically coupled to an on-board electrical system that operates in the vehicle.

13. The ionization air purification system of claim 12 , further comprising a switch for selectively activating the air ionization device.

14. The ionization air purification system of claim 1 , wherein the control device includes a sensor which senses the air flow dynamics and modifies the energy levels being delivered to the ionization device.

15. The ionization air purification system of claim 1 , wherein the control device includes a sensor which senses the air quality and modifies the energy levels being delivered to the ionization device.

16. The ionization air purification system of claim 11 , wherein the flat board comprises an impervious, non-porous, dielectric fiberglass material that has a series of conductive deposited substrates bonded permanently to one side of the flat board.

17. The ionization air purification system of claim 16 , wherein the conductive deposited substrates comprise a grid of a multitude of 6-pointed stars, symmetrically spaced in X and Y directions.

18. The ionization air purification system of claim 17 , wherein the conductive deposited substrates are layers of copper, nickel, and gold.

Assignments (2)
SECURITY INTEREST Recorded Apr 4, 2022
From: CLEAN AIR GROUP, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 059493/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2017
From: ABATE, ANTHONY M.; GURMAN, HAL ROSS
To: CLEAN AIR GROUP, INC.
Reel/Frame 044756/0226 →
Continuity (3)
Continuation In Part 14385346
Provisional Application 61611676 · Mar 16, 2012
Related Publication 20180065126A1 · Mar 8, 2018