IP Library › Granted Patent US 12,264,611
Granted Patent B2
US 12,264,611 · App. 18/692,365 · Granted Apr 1, 2025

Exhaust gas after-treatment device and propulsion system including the device

Inventor: Clino D'Epiro (Turin, IT)
Assignee: FPT INDUSTRIAL S.P.A.
F01N3/2066F01N3/021F01N3/101B01D53/9418B01D53/9422B01D53/9445F01N3/103F01N3/106F01N3/206F01N2560/06F01N2610/02F01N2900/1602
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Quick Facts
Patent No.
US 12,264,611
App. No.
18/692,365
Granted
Apr 1, 2025
Kind
B2
Abstract

A Diesel engine and an exhaust gas after-treatment device operatively associated with an exhaust manifold of the Diesel engine, the after-treatment device comprising in succession a Barium-loaded three-way catalyst, an anti-particulate filter and a selective reducing catalyst equipped with a relative dosing device of urea-based reducing agent.

Claims (18)

1. An exhaust gas after-treatment device comprising a barium-loaded three-way catalyst, an anti-particulate filter and a selective reducing catalyst-equipped with a relative doser of urea-based reducing agent, wherein the barium-loaded three-way catalyst is arranged upstream of the exhaust gas filter-after treatment device and the antiparticle filter and the selective reducing catalyst-equipped with the relative doser of urea-based reducing agent are arranged downstream of the exhaust gas filter after-treatment device.

2. A propulsion system comprising a diesel engine and an exhaust gas after-treatment device operatively associated with an exhaust manifold of the diesel engine, the after-treatment device comprising in succession a barium-loaded three-way catalyst, an anti-particulate filter and a selective reducing catalyst equipped with the relative doser of urea-based reducing agent, wherein the barium-loaded three-way catalyst is arranged upstream of the exhaust gas filter-after treatment device and the antiparticle filter and the selective reducing catalyst-equipped with the relative doser of urea-based reducing agent are arranged downstream of the exhaust gas filter after-treatment device.

3. The system according to claim 2 , further comprising

feeding means for controlling an air/fuel ratio of a mixture introduced into the diesel engine,

a first temperature sensor arranged to measure a temperature at the three-way catalyst,

a second temperature sensor arranged to measure a temperature at the selective reduction catalyst, and

a processing means configured to control a supply means on the basis of temperature values measured by the first and second temperature sensors.

4. The system according to claim 3 , wherein the processing means, during the heating of the after-treatment device, are configured for

carrying out a first operating phase, by controlling a stoichiometric fuel supplying of the engine in cold starting conditions, while a first temperature threshold is reached, measured by means of the first temperature sensor,

carrying out a second operating phase, by controlling a generally lean engine fuel supplying with cyclic enrichments of the mixture in order to induce regenerations of the barium-loaded three-way catalyst while reaching a second temperature threshold measured by means of the second temperature sensor, and

carrying out a third operating step, by controlling a stably lean engine fuel supplying and activating the urea-based reducing agent doser device.

5. A method for controlling a fuel supply of a propulsion system comprising a diesel engine and an exhaust gas after-treatment device operatively associated with an exhaust manifold of the diesel engine, the post-treatment comprising in succession a catalyst and three-way loaded with barium, an anti-particulate filter and a selective reducing catalyst equipped with a relative dispenser of reducing agent based on urea, the method comprising:

(i) stoichiometric fuel supplying the engine in cold starting conditions, while a first temperature threshold is reached, measured by means of a first temperature sensor,

(ii) generally lean engine fuel supplying with cyclic enrichments of the mixture so as to induce regenerations of the barium-loaded three-way catalyst while reaching a second temperature threshold measured by means of a second temperature sensor, and

(iii) stably lean feeding the engine and activation of the urea-based reducing agent doser, wherein the barium-loaded three-way catalyst is arranged upstream of the exhaust gas filter-after treatment device and the antiparticle filter and the selective reducing catalyst-equipped with the relative doser of urea-based reducing agent are arranged downstream of the exhaust gas filter after-treatment device.

6. A computer program comprising program coding means suitable for carrying out all steps (i-iii) of claim 5 , when the program is run on a processing unit-configured to control a supply means on the basis of temperature values measured by the first and second temperature sensors.

7. A computer readable means comprising a recorded program, the computer readable means comprising program coding means adapted to perform all steps (i-iii) of claim 6 , when the program is run on a processing unit configured to control a supply means on the basis of temperature values measured by the first and second temperature sensors.

8. An industrial or commercial vehicle comprising the propulsion system according to claim 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: D'EPIRO, CLINO
To: FPT INDUSTRIAL S.P.A.
Reel/Frame 066781/0853 →
Priority Claims (1)
IT 102021000024809 · Sep 28, 2021 · national
Continuity (1)
Related Publication 20240328336A1 · Oct 3, 2024
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