IP Library › Granted Patent US 10,480,369
Granted Patent B1
US 10,480,369 · App. 16/142,634 · Granted Nov 19, 2019

Exhaust after-treatment system for diesel internal combustion engines

Inventors: Mufaddel Dahodwala (West Bloomfield, MI); Tamas Szailer (Clarkston, MI); Satyum Joshi (Farmington Hills, MI); Erik Koehler (Birmingham, MI); Michael Franke (Rochester Hills, MI)
Assignee: FEV NORTH AMERICA INC.
F01N3/2013B01D46/0027B01D53/944B01D53/9431B01D53/9481B01D53/9495F01N3/035F01N3/0814F01N3/103F01N3/106F01N3/208F01N3/28F01N3/36F01N9/00F01N13/009B01D2255/904B01D2255/91B01D2279/30F01N2570/14F01N2610/02F01N2610/03F01N2900/1602
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Quick Facts
Patent No.
US 10,480,369
App. No.
16/142,634
Granted
Nov 19, 2019
Kind
B1
Abstract

An exhaust after-treatment system is coupled to an exhaust pipe of a diesel internal combustion engine (ICE) for treating an exhaust gas. The exhaust after-treatment system includes a diesel oxidation catalyst (DOC) and a SCR coated diesel particulate filter (SDPF) serially disposed in a downstream path of the exhaust gas. An electrically heated catalyst (EHC) is coupled to the DOC and is configured to electrically heat the DOC for reducing the requisite time to reach a DOC light-off temperature. A controller is operably coupled with the DOC and the EHC and is configured to operate the EHC in response to a mid bed temperature of the DOC. More specifically, the controller is configured to supply power to the EHC when the DOC mid bed temperature is below a predetermined value and discontinue the power supply to the EHC when the DOC mid bed temperature is greater than the predetermined value.

Claims (18)

1. An exhaust after-treatment system fluidically coupled to an exhaust pipe of a diesel internal combustion engine (ICE) for treating an exhaust gas, the exhaust after-treatment system comprising:

a diesel oxidation catalyst (DOC) disposed in a downstream path of the exhaust gas produced by the diesel internal combustion engine;

a selective catalytic reduction (SCR) disposed downstream of said diesel oxidation catalyst;

an electrically heated catalyst (EHC) coupled to said diesel oxidation catalyst and configured to electrically heat said diesel oxidation catalyst for reducing an amount of time to reach a DOC light-off temperature;

a controller operably coupled with said diesel oxidation catalyst and said electrically heated catalyst and configured to supply electrical power to said electrically heated catalyst in response to a mid bed temperature of said diesel oxidation catalyst being less than a predetermined DOC temperature value and discontinue the supply of electrical power to said electrically heated catalyst in response to detected the mid bed temperature of said diesel oxidation catalyst being greater than the predetermined DOC temperature value;

an SCR coated diesel particulate filter (SDPF) disposed downstream of said diesel oxidation catalyst and upstream of said selective catalytic reduction (SCR);

a fuel dosing system disposed upstream of said diesel oxidation catalyst and configured to dose the path of exhaust gas; and

said controller operably coupled to said fuel dosing system and said SDPF and configured to operate said fuel dosing system in response to detecting a mid bed temperature of said SDPF being lower than a predetermined SDPF temperature value and said discontinued supply of electrical power to said electrically heated catalyst.

2. An exhaust after-treatment system as set forth in claim 1 , wherein the predetermined DOC temperature value is 180 degrees Celsius.

3. An exhaust after-treatment system as set forth in claim 2 , further comprising an ammonia slip catalyst (ASC) disposed downstream of said selective catalytic reduction.

4. An exhaust after-treatment system as set forth in claim 3 , further comprising a reducing agent dosing system disposed upstream of said selective catalytic reduction and configured to receive and inject a reducing agent into the path of exhaust gas.

5. An exhaust after-treatment system as set forth in claim 1 , further comprising a passive NOx absorber (PNA) coupled to said diesel oxidation catalyst.

6. An exhaust after-treatment system as set forth in claim 1 , further comprising

an additional selective catalytic reduction disposed downstream of said diesel oxidation catalyst and upstream of said selective catalytic reduction;

a fuel dosing system disposed upstream of said diesel oxidation catalyst and configured to dose the path of exhaust gas; and

said controller operably coupled to said fuel dosing system and said additional selective catalytic reduction and configured to operate said fuel dosing system in response a mid bed temperature of said additional selective catalytic reduction.

7. An exhaust after-treatment system as set forth in claim 6 , further comprising

a diesel particulate filter (DPF) coupled to said diesel oxidation catalyst.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2018
From: DAHODWALA, MUFADDEL; SZAILER, TAMAS; JOSHI, SATYUM; KOEHLER, ERIK; FRANKE, MICHAEL
To: FEV NORTH AMERICA INC.
Reel/Frame 047099/0373 →
Cited By (4)
US 12,208,361 US 12,480,431 US 12,655,781 US 12,723,529