IP Library Granted Patent US 10,036,291
Granted Patent B2
US 10,036,291 · App. 15/001,448 · Granted Jul 31, 2018

Exhaust after-treatment system including ammonia and hydrogen generation

Inventors: Adam J. Kotrba (Laingsburg, MI); Padmanabha Reddy Ettireddy (Canton, MI); Michael Golin (Dexter, MI); Michael C. Bradford (Chelsea, MI); Bradley Fingland (Jackson, MI)
Assignee: Tenneco Automotive Operating Company Inc.
F01N3/035B01D53/9431B01D53/9495F01N3/021F01N3/0293F01N3/208F01N3/2073F01N9/00F01N11/00F01N11/002F01N11/007F01N13/009F01N2610/02F01N2610/04F01N2610/1406F01N2610/1453F01N2900/14F01N2900/1402F01N2900/1404F01N2900/1406F01N2900/1411Y02T10/24Y02T10/47
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Quick Facts
Patent No.
US 10,036,291
App. No.
15/001,448
Granted
Jul 31, 2018
Kind
B2
Abstract

An after-treatment system including an exhaust treatment component provided in an exhaust passage, a tank carrying an aqueous reagent, and an electrochemical cell in communication with the tank and configured to receive the aqueous reagent therefrom. The electrochemical cell is configured to convert the aqueous reagent into a first exhaust treatment fluid and a second exhaust treatment fluid. A controller is in communication with the electrochemical cell. The controller is configured to vary amounts and/or composition of each of the first exhaust treatment fluid and the second exhaust treatment fluid produced by the electrochemical cell. An injector is in communication with the electrochemical cell and the exhaust passage, and is configured to receive one of the first exhaust treatment fluid or the second exhaust treatment fluid from the electrochemical cell, and dose the one exhaust treatment fluid into the exhaust passage at a location upstream from the exhaust treatment component.

Claims (55)

1. An exhaust after-treatment system for treating an exhaust produced by an engine, comprising:

an exhaust passage in communication with the engine and configured for receipt of the exhaust produced by the engine;

an exhaust treatment component provided in the exhaust passage;

a tank carrying an aqueous reagent;

an electrochemical cell in communication with the tank and configured to receive the aqueous reagent therefrom, the electrochemical cell configured to convert the aqueous reagent into a first exhaust treatment fluid and a second exhaust treatment fluid;

a controller in communication with the electrochemical cell, the controller being configured to vary amounts of each of the first exhaust treatment fluid and the second exhaust treatment fluid produced by the electrochemical cell; and

a first accumulator and a second accumulator in communication with the electrochemical cell, the first accumulator configured to store the first exhaust treatment fluid produced by the electrochemical cell, and the second accumulator configured to store the second exhaust treatment fluid.

2. The exhaust after-treatment system according to claim 1 , further comprising an injector in communication with the electrochemical cell and the exhaust passage, the injector being configured to receive the first exhaust treatment fluid and/or the second exhaust treatment fluid from the electrochemical cell, and dose the first exhaust treatment fluid and/or second exhaust treatment fluid into the exhaust passage at a location upstream from the exhaust treatment component.

3. The exhaust after-treatment system according to claim 1 , wherein the aqueous reagent comprises urea.

4. The exhaust after-treatment system according to claim 3 , wherein the first exhaust treatment fluid comprises ammonia, and the second exhaust treatment fluid comprises hydrogen.

5. The exhaust after-treatment system according to claim 1 , wherein the electrochemical cell includes an anode and a cathode, each of the anode and the cathode being in communication with a power source.

6. The exhaust after-treatment system according to claim 5 , wherein the power source is in communication with the controller.

7. The exhaust after-treatment system according to claim 6 , wherein power source is configured to apply a voltage to each of the anode and the cathode based on an instruction received from the controller.

8. The exhaust after-treatment system according to claim 7 , wherein the voltage applied to each of the anode and the cathode is selected by the controller to vary the amounts and/or composition of each of the first exhaust treatment fluid and the second exhaust treatment fluid produced by the electrochemical cell.

9. The exhaust after-treatment system according to claim 1 , further comprising a plurality of the electrochemical cells.

10. The exhaust after-treatment system according to claim 1 , further comprising a temperature control device in communication with the controller for controlling a temperature of the electrochemical cell to vary the amounts and/or composition of the first and second exhaust treatment fluids produced by the electrochemical cell.

11. The exhaust after-treatment system according to claim 1 , further comprising a second exhaust treatment component in the exhaust passage and a second injector provided at a location upstream from the second exhaust treatment component, the second injector being configured to receive the first exhaust treatment fluid and/or the second exhaust treatment fluid from the electrochemical cell, and dose the first exhaust treatment fluid and/or the second exhaust treatment fluid into the exhaust passage at the location upstream from the second exhaust treatment component.

12. An exhaust after-treatment system for treating an exhaust produced by an engine, comprising:

an exhaust passage in communication with the engine and configured for receipt of the exhaust produced by the engine;

a first exhaust treatment component provided in the exhaust passage;

a second exhaust treatment component provided in the exhaust passage;

a tank carrying an aqueous urea reagent;

a plurality of electrochemical cells in communication with the tank and configured to receive the aqueous urea reagent therefrom, the electrochemical cells each configured to convert the aqueous reagent into an exhaust treatment fluid comprising ammonia and an exhaust treatment fluid comprising hydrogen;

a controller in communication with each of the electrochemical cells, the controller being configured to vary amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by the electrochemical cells;

a first injector in communication with each of the electrochemical cells and the exhaust passage, the first injector being configured to receive the ammonia exhaust treatment fluid from the electrochemical cells, and dose the ammonia exhaust treatment fluid into the exhaust located in the exhaust passage at a location upstream from the first exhaust treatment component; and

a second injector in communication with each of the electrochemical cells and the exhaust passage, the second injector being configured to receive the hydrogen-comprising exhaust treatment fluid from the electrochemical cells, and dose the hydrogen-comprising exhaust treatment fluid into the exhaust located in the exhaust passage at a location upstream from the second exhaust treatment component.

13. The exhaust after-treatment system according to claim 12 , wherein the electrochemical cells each include an anode, a cathode, and a power source, each of the anode and the cathode being in communication with the power source.

14. The exhaust after-treatment system according to claim 13 , wherein each of the power sources are in communication with the controller.

15. The exhaust after-treatment system according to claim 14 , wherein the power source of each cell is configured to apply a voltage to each of the anode and the cathode of each cell based on an instruction received from the controller.

16. The exhaust after-treatment system according to claim 15 , wherein the voltage applied to the anode and cathode of each cell is independently selected by the controller to vary the amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by each of the electrochemical cells.

17. The exhaust after-treatment system according to claim 12 , further comprising a pump between the tank and each of the electrochemical cells for providing the aqueous urea reagent from the tank to the each of the electrochemical cells, the pumps each being in communication with the controller.

18. The exhaust after-treatment system according to claim 17 , wherein a flow rate of the aqueous urea reagent to each of the electrochemical cells provided by each of the pumps is independently selected by the controller to vary a concentration of the aqueous reagent in each of the electrochemical cell.

19. The exhaust after-treatment system according to claim 18 , wherein varying a current applied to the anode and the cathode of each of the electrochemical cells varies the amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by each of the electrochemical cells.

20. The exhaust after-treatment system according to claim 12 , wherein each of the electrochemical cells are in communication with a first feed line that is configured to provide the ammonia-comprising exhaust treatment fluid produced by each of the electrochemical cells to the first injector, and each of the electrochemical cells are in communication with a second feed line that is configured to provide the hydrogen-comprising exhaust treatment fluid produced by each of the electrochemical cells to the second injector.

21. An exhaust after-treatment system for treating an exhaust produced by an engine, comprising:

an exhaust passage in communication with the engine and configured for receipt of the exhaust produced by the engine;

a first exhaust treatment component provided in the exhaust passage;

a second exhaust treatment component provided in the exhaust passage;

a tank carrying an aqueous urea reagent;

a plurality of electrochemical cells in communication with the tank and configured to receive the aqueous urea reagent therefrom, the electrochemical cells each configured to convert the aqueous reagent into an ammonia-comprising exhaust treatment fluid and a hydrogen-comprising exhaust treatment fluid;

a controller in communication with each of the electrochemical cells, the controller being configured to vary amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by the electrochemical cells;

a first feed line in communication with and configured to receive the ammonia-comprising exhaust treatment fluid from each of the electrochemical cells;

a second feed line in communication with and configured to receive the hydrogen-comprising exhaust treatment fluid from each of the electrochemical cells;

a plurality of first injectors in communication with the first feed line, the first injectors each being configured to dose the ammonia-comprising exhaust treatment fluid into the exhaust located in the exhaust passage at a location upstream from the first exhaust treatment component; and

a plurality of second injectors in communication with the second feed line, the second injectors each being configured to dose the hydrogen-comprising exhaust treatment fluid into the exhaust located in the exhaust passage at a location upstream from the second exhaust treatment component,

wherein a plurality of first valves are located between the first injectors and the first feed line, and a plurality of second valves are located between the second injectors and the second feed line.

22. The exhaust after-treatment system according to claim 21 , wherein each of the first valves and each of the second valves are in communication with the controller.

23. The exhaust after-treatment system according to claim 22 , wherein each of the first valves and each of the second valves are independently actuated by the controller to vary amounts and/or composition of the ammonia-comprising exhaust treatment fluid and hydrogen-comprising exhaust treatment fluid doses into the exhaust passage.

24. The exhaust after-treatment system according to claim 21 , wherein the electrochemical cells each include an anode, a cathode, and a power source, each of the anode and the cathode being in communication with the power source.

25. The exhaust after-treatment system according to claim 24 , wherein each of the power sources are in communication with the controller.

26. The exhaust after-treatment system according to claim 25 , wherein the power source of each cell is configured to apply a voltage to each of the anode and the cathode of each cell based on an instruction received from the controller.

27. The exhaust after-treatment system according to claim 24 , wherein the voltage applied to the anode and cathode of each cell is independently selected by the controller to vary the amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by each of the electrochemical cells.

28. The exhaust after-treatment system according to claim 21 , further comprising a pump between the tank and each of the electrochemical cells for providing the aqueous urea reagent from the tank to the each of the electrochemical cells, the pumps each being in communication with the controller.

29. The exhaust after-treatment system according to claim 28 , wherein a flow rate of the aqueous urea reagent to each of the electrochemical cells provided by each of the pumps is independently selected by the controller to vary a concentration of the aqueous reagent in each of the electrochemical cell.

30. The exhaust after-treatment system according to claim 29 , wherein varying a current applied to the anode and the cathode of each of the electrochemical cells varies the amounts and/or composition of each of the ammonia-comprising exhaust treatment fluid and the hydrogen-comprising exhaust treatment fluid produced by each of the electrochemical cells.

Assignments (12)
CHANGE OF NAME Recorded Aug 20, 2025
From: TENNECO AUTOMOTIVE OPERATING COMPANY INC.
To: TENNECO AUTOMOTIVE OPERATING COMPANY LLC
Reel/Frame 072553/0215 →
PATENT SECURITY AGREEMENT (ABL) Recorded Apr 7, 2023
From: TENNECO INC.; DRIV AUTOMOTIVE INC.; FEDERAL-MOGUL CHASSIS LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL WORLD WIDE LLC; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; THE PULLMAN COMPANY
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 063268/0506 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS (FIRST LIEN) Recorded Nov 22, 2022
From: DRIV AUTOMOTIVE INC.; FEDERAL-MOGUL CHASSIS LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL WORLD WIDE LLC; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INC.; THE PULLMAN COMPANY
To: CITIBANK, N.A., AS COLLATERAL AGENT
Reel/Frame 061989/0689 →
RELEASE OF SECURITY INTEREST Recorded Nov 19, 2022
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: TENNECO INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; THE PULLMAN COMPANY; TENNECO GLOBAL HOLDINGS INC.; CLEVITE INDUSTRIES INC.; TMC TEXAS INC.; CARTER AUTOMOTIVE COMPANY LLC; FEDERAL-MOGUL WORLD WIDE LLC; FELT PRODUCTS MFG. CO. LLC; MUZZY-LYON AUTO PARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL POWERTRAIN IP LLC; FEDERAL-MOGUL PISTON RINGS, LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL CHASSIS LLC; F-M MOTORPARTS TSC LLC; F-M TSC REAL ESTATE HOLDINGS LLC; FEDERAL-MOGUL VALVE TRAIN INTERNATIONAL LLC; FEDERAL-MOGUL SEVIERVILLE, LLC; BECK ARNLEY HOLDINGS LLC; FEDERAL-MOGUL FILTRATION LLC; FEDERAL-MOGUL FINANCING CORPORATION; FEDERAL-MOGUL PRODUCTS US LLC
Reel/Frame 061975/0218 →
RELEASE OF SECURITY INTEREST Recorded Nov 19, 2022
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: TENNECO INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; THE PULLMAN COMPANY; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL PRODUCTS US LLC; FEDERAL-MOGUL WORLD WIDE LLC; FEDERAL-MOGUL CHASSIS LLC; DRIV AUTOMOTIVE INC.
Reel/Frame 061975/0031 →
RELEASE OF SECURITY INTEREST Recorded Nov 19, 2022
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: TENNECO INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; THE PULLMAN COMPANY; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL PRODUCTS US LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL WORLD WIDE LLC; FEDERAL-MOGUL CHASSIS LLC; DRIV AUTOMOTIVE INC.
Reel/Frame 061971/0156 →
SECURITY AGREEMENT Recorded Mar 17, 2021
From: TENNECO INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; THE PULLMAN COMPANY; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL PRODUCTS US LLC; FEDERAL-MOGUL WORLD WIDE LLC; FEDERAL-MOGUL CHASSIS LLC; DRIV AUTOMOTIVE INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 055626/0065 →
SECURITY AGREEMENT Recorded Dec 1, 2020
From: TENNECO INC.; THE PULLMAN COMPANY; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL PRODUCTS US LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL WORLD WIDE LLC; FEDERAL-MOGUL CHASSIS LLC; DRIV AUTOMOTIVE INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 054555/0592 →
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2018
From: JPMORGAN CHASE BANK, N.A.
To: TENNECO AUTOMOTIVE OPERATING COMPANY INC.
Reel/Frame 048099/0716 →
CONFIRMATORY GRANT OF SECURITY INTERESTS IN UNITED STATES PATENTS Recorded Oct 9, 2018
From: TENNECO INC.; TENNECO AUTOMOTIVE OPERATING COMPANY INC.; TENNECO INTERNATIONAL HOLDING CORP.; THE PULLMAN COMPANY; TENNECO GLOBAL HOLDINGS INC.; CLEVITE INDUSTRIES INC.; TMC TEXAS INC.; CARTER AUTOMOTIVE COMPANY LLC; FEDERAL-MOGUL WORLD WIDE LLC; FELT PRODUCTS MFG. CO. LLC; MUZZY-LYON AUTO PARTS LLC; FEDERAL-MOGUL POWERTRAIN LLC; FEDERAL-MOGUL POWERTRAIN IP LLC; FEDERAL-MOGUL PISTON RINGS, LLC; FEDERAL-MOGUL IGNITION LLC; FEDERAL-MOGUL MOTORPARTS LLC; FEDERAL-MOGUL CHASSIS LLC; F-M MOTORPARTS TSC LLC; F-M TSC REAL ESTATE HOLDINGS LLC; FEDERAL-MOGUL VALVETRAIN INTERNATIONAL LLC; FEDERAL-MOGUL SEVIERVILLE, LLC; BECK ARNLEY HOLDINGS LLC; FEDERAL-MOGUL FILTRATION LLC; FEDERAL-MOGUL FINANCING CORPORATION; FEDERAL-MOGUL PRODUCTS US LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL TRUSTEE
Reel/Frame 047223/0001 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS Recorded Jun 14, 2017
From: TENNECO AUTOMOTIVE OPERATING COMPANY INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 042809/0515 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2016
From: KOTRBA, ADAM J.; ETTIREDDY, PADMANABHA R.; GOLIN, MICHAEL; BRADFORD, MICHAEL C.; FINGLAND, BRADLEY
To: TENNECO AUTOMOTIVE OPERATING COMPANY INC.
Reel/Frame 037605/0702 →
Continuity (1)
Related Publication 20170204762A1 · Jul 20, 2017
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