IP Library › Granted Patent US 10,920,637
Granted Patent B2
US 10,920,637 · App. 15/442,601 · Granted Feb 16, 2021

Calibrated non-thermal plasma systems for control of engine emissions

Inventors: John F. Schickler (Rochester, NY); John H. Erbland (Fairport, NY); Neville F. Rieger (Pittsford, NY)
Assignee: Paradigm of NY, LLC
F01N3/208B01D53/32B01D53/9477F01N3/035F01N3/103F01N3/30F01N11/007F02M26/14F02M26/15B01D2259/818F01N2240/28H05H2245/1215
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Quick Facts
Patent No.
US 10,920,637
App. No.
15/442,601
Granted
Feb 16, 2021
Kind
B2
Abstract

The instant invention is based on techniques for using non-thermal plasma reactors in both the main exhaust pipe and in the exhaust gas recirculation feed pipe to reduce particulate matter sufficiently to meet EPA limits for PM and enhanced exhaust gas recirculation to meet NOx limits. More specifically, it is based upon the use of a non-thermal plasma device in which a high voltage charge in the plasma reactor causes extremely rapid oxidation of soot particles in the exhaust stream of an engine and further chemical reactions that aid in the reduction of NOx. The primary benefit of this technology is that it can be calibrated to optimize both soot and NOx reduction.

Claims (50)

1. A calibrated non-thermal plasma system for control of internal combustion engine emissions, comprising:

an internal combustion engine including an exhaust gas recirculation system receiving exhaust gas from an outlet for said engine and recirculating a portion of said exhaust gas to an engine intake for said engine while a remaining portion of said exhaust gas exits said recirculation system via a recirculation system outlet for processing in aftertreatment systems before exiting to the atmosphere;

at least one non-thermal plasma reactor receiving and processing exhaust gas from said recirculation system intermediate said engine outlet and said recirculation system outlet;

an air source providing air for injection into said exhaust stream intermediate said engine and said non-thermal plasma reactor via a control valve; and

a control system to maximize removal of particulate matter from said exhaust gas stream comprising an electronic control module controlling at least one of power provided to said non-thermal plasma reactor, and said control valve providing air for injection into said exhaust stream;

wherein said control system monitors oxygen levels intermediate said engine outlet and said at least one non-thermal plasma reactor, and actuates said control valve to maintain oxygen levels in said non-thermal plasma reactor at an optimum level to maximize elimination of particulate matter from said exhaust gas stream.

2. The system of claim 1 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

3. The system of claim 1 , wherein at least one of: said at least one non-thermal reactor voltage is maintained at 25,000 Volts, and Oxygen maintained at 18-25% of the exhaust gas stream entering said at least one non-thermal reactor.

4. The system of claim 1 , wherein said control system monitors oxygen levels intermediate said engine outlet and said at least one non-thermal plasma reactor, and actuates a power supply for said at least one non-thermal plasma reactor to maintain power levels in said at least one non-thermal plasma reactor at an optimum level to maximize elimination of particulate matter from said exhaust gas stream.

5. The system of claim 4 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

6. The system of claim 1 , wherein said aftertreatment systems include at least one of:

a diesel oxidation catalyst,

a diesel particulate filter, and

a selective catalytic reduction system.

7. The system of claim 6 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

8. The system of claim 6 , wherein at least one of: said at least one non-thermal reactor voltage is maintained at 25,000 Volts, and Oxygen maintained at 18-25% of the exhaust gas stream entering said at least one non-thermal reactor.

9. The system of claim 6 , wherein said control system monitors oxygen levels intermediate said engine outlet and said at least one non-thermal plasma reactor, and actuates a power supply for said at least one non-thermal plasma reactor to maintain power levels in said at least one non-thermal plasma reactor at an optimum level to maximize elimination of particulate matter from said exhaust gas stream.

10. The system of claim 9 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

11. A calibrated non-thermal plasma system for control of internal combustion engine emissions, comprising:

an internal combustion engine including an exhaust gas recirculation system receiving exhaust gas from an outlet for said engine and recirculating a portion of said exhaust gas to an engine intake for said engine while a remaining portion of said exhaust gas exits said recirculation system via a recirculation system outlet for processing in aftertreatment systems before exiting to the atmosphere;

at least one non-thermal plasma reactor receiving and processing exhaust gas from said recirculation system intermediate said engine outlet and said recirculation system outlet;

an air source providing air for injection into said exhaust stream intermediate said engine and said non-thermal plasma reactor via a control valve; and

a control system to maximize removal of particulate matter from said exhaust gas stream comprising an electronic control module controlling at least one of power provided to said non-thermal plasma reactor, and said control valve providing air for injection into said exhaust stream;

wherein said control system monitors oxygen levels intermediate said engine outlet and said at least one non-thermal plasma reactor, and actuates a power supply for said at least one non-thermal plasma reactor to maintain power levels in said at least one non-thermal plasma reactor at an optimum level to maximize elimination of particulate matter from said exhaust gas stream.

12. The system of claim 11 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

13. The system of claim 11 , wherein at least one of: said at least one non-thermal reactor voltage is maintained at 25,000 Volts, and Oxygen maintained at 18-25% of the exhaust gas stream entering said at least one non-thermal reactor.

14. The system of claim 11 , wherein said aftertreatment systems include at least one of:

a diesel oxidation catalyst,

a diesel particulate filter, and

a selective catalytic reduction system.

15. The system of claim 14 , wherein at least one of:

said at least one non-thermal reactor comprises at least one of: a plurality of non-thermal reactors arranged in parallel, and a plurality of non-thermal reactors arranged in series, and

a multiplex voltage controller provides power to said at least one non-thermal reactor.

16. The system of claim 14 , wherein at least one of: said at least one non-thermal reactor voltage is maintained at 25,000 Volts, and Oxygen maintained at 18-25% of the exhaust gas stream entering said at least one non-thermal reactor.

17. A calibrated non-thermal plasma system for control of internal combustion engine emissions, comprising:

an internal combustion engine including an exhaust gas recirculation system receiving exhaust gas from an outlet for said engine and recirculating a portion of said exhaust gas to an engine intake for said engine while a remaining portion of said exhaust gas exits said recirculation system via a recirculation system outlet for processing in aftertreatment systems before exiting to the atmosphere;

at least one non-thermal plasma reactor receiving and processing exhaust gas from said recirculation system intermediate said engine outlet and said recirculation system outlet;

an air source providing air for injection into said exhaust stream intermediate said engine and said non-thermal plasma reactor via a control valve; and

a control system to maximize removal of particulate matter from said exhaust gas stream comprising an electronic control module controlling power provided to said non-thermal plasma reactor, and said control valve providing air for injection into said exhaust stream;

wherein at least one of: said at least one non-thermal reactor voltage is maintained at 25,000 Volts, and Oxygen maintained at 18-25% of the exhaust gas stream entering said at least one non-thermal reactor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2021
From: SCHICKLER, JOHN F.; ERBLAND, JOHN H.; RIEGER, NEVILLE F.
To: PARADIGM OF NY, LLC
Reel/Frame 054863/0457 →
Continuity (6)
Continuation In Part 15042778 · Feb 12, 2016
Continuation In Part 14072577 · Nov 5, 2013
Provisional Application 62299549 · Feb 24, 2016
Provisional Application 61722404 · Nov 5, 2012
Related Publication 20170335731A1 · Nov 23, 2017
Related Publication 20190360376A9 · Nov 28, 2019