IP Library Granted Patent US 10,207,254
Granted Patent B2
US 10,207,254 · App. 15/447,294 · Granted Feb 19, 2019

Catalysed substrate monolith

Inventors: Philip Gerald Blakeman (Shanghai, CN); Gavin Michael Brown (Royston, GB); Sougato Chatterjee (Audubon, PA); Andrew Francis Chiffey (Royston, GB); Jane Gast (Audubon, PA); Paul Richard Phillips (Royston, GB); Raj Rao Rajaram (Royston, GB); Glen Spreitzer (Audubon, PA); Andrew Peter Walker (Royston, GB)
Assignee: Johnson Matthey Public Limited Company
B01J23/44B01D53/9418B01D53/9472B01D53/9477B01J21/04B01J23/40B01J23/42B01J23/63B01J29/763B01J29/7615B01J33/00B01J35/0006B01J35/04B01J37/0244B01J37/0246B01J37/038F01N3/035F01N3/208F01N3/2066B01D53/944B01D53/9481B01D2255/104B01D2255/106B01D2255/1021B01D2255/1023B01D2255/2065B01D2255/2092B01D2255/20707B01D2255/20715B01D2255/30B01D2255/407B01D2255/904B01D2255/9022B01D2255/9155B01D2258/012B01J2229/186B01J2229/42F01N2510/0682Y02A50/2325Y02T10/24
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Quick Facts
Patent No.
US 10,207,254
App. No.
15/447,294
Granted
Feb 19, 2019
Kind
B2
Abstract

A catalyzed substrate monolith 12 for use in treating exhaust gas emitted from a lean-burn internal combustion engine, which catalyzed substrate monolith 12 comprising a first washcoat coating 16 and a second washcoat coating 18 , wherein the first washcoat coating comprises a catalyst composition comprising at least one platinum group metal (PGM) and at least one support material for the at least one PGM, wherein at least one PGM in the first washcoat coating is liable to volatilize when the first washcoat coating is exposed to relatively extreme conditions including relatively high temperatures, wherein the second washcoat coating comprises at least one metal oxide for trapping volatilized PGM and wherein the second washcoat coating is oriented to contact exhaust gas that has contacted the first washcoat coating.

Claims (16)

1. A catalyzed substrate monolith for use in treating exhaust gas emitted from a lean-burn internal combustion engine comprising:

a first washcoat coating comprising a catalyst composition comprising platinum and palladium and at least one support material for the platinum and palladium,

wherein at least one of platinum and palladium in the first washcoat coating is liable to volatilize when the first washcoat coating is exposed to temperatures of 700° C. or greater, and

a second washcoat coating comprising a catalyst composition comprising at least one metal selected from the group consisting of palladium, silver, gold and combinations of any two or more thereof, and at least one metal oxide for trapping at least one of volatilised platinum and palladium,

wherein the at least one metal oxide supports the at least one metal, and

wherein the second washcoat coating is oriented to contact exhaust gas that has contacted the first washcoat coating, and

wherein the substrate monolith is a flow-through substrate monolith, and

wherein a weight ratio of Pt:Pd in the catalyzed substrate monolith is <2.

2. The catalyzed substrate monolith of claim 1 , wherein the at least one metal oxide comprises a metal oxide selected from the group consisting of optionally stabilised alumina, amorphous silica-alumina, optionally stabilised zirconia, ceria, titania, an optionally stabilised ceria-zirconia mixed oxide and mixtures of any two or more thereof.

3. The catalyzed substrate monolith of claim 1 , wherein the first washcoat coating is disposed in a first washcoat zone of the substrate monolith and the second washcoat coating is disposed in a second washcoat zone of the substrate monolith, wherein there is substantially no overlap between the first washcoat zone and the second washcoat zone.

4. The catalyzed substrate monolith of claim 1 , wherein the second washcoat coating is disposed in a layer above the first washcoat coating.

5. An exhaust system for a lean-burn internal combustion engine, comprising a catalyzed substrate monolith of claim 1 as a first catalyzed substrate monolith.

6. The exhaust system of claim 5 , comprising a second catalyzed substrate monolith comprising a selective catalytic reduction (SCR) catalyst, wherein the second catalyzed substrate monolith is disposed downstream from the first catalyzed substrate monolith.

7. The exhaust system of claim 6 , comprising an injector for injecting a nitrogenous reductant into exhaust gas between the first catalyzed substrate monolith and the second catalyzed substrate monolith.

8. The exhaust system of claim 5 , comprising a third substrate monolith, wherein the third substrate monolith is a filtering substrate monolith and is disposed downstream of the second catalyzed substrate monolith.

9. The exhaust system of claim 8 , wherein the third substrate monolith comprises an oxidation catalyst.

Assignments (2)
CHANGE OF ADDRESS Recorded Jan 14, 2026
From: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 074703/0733 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2018
From: BLAKEMAN, PHILIP GERALD; BROWN, GAVIN MICHAEL; CHATTERJEE, SOUGATO; CHIFFEY, ANDREW FRANCIS; GAST, JANE; PHILLIPS, PAUL RICHARD; RAJARAM, RAJ RAO; SPREITZER, GLEN; WALKER, ANDREW PETER
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 045869/0118 →
Priority Claims (1)
GB 1200780.3 · Jan 18, 2012 · national
Continuity (5)
Continuation 14710171 · May 12, 2015
Continuation 14199247 · Mar 6, 2014
Continuation 13711120 · Dec 11, 2012
Provisional Application 61569523 · Dec 12, 2011
Related Publication 20170274358A1 · Sep 28, 2017
Cited By (5)
US 12,296,319 US 12,318,760 US 12,343,706 US 12,343,714 US 12,714,990