IP Library Granted Patent US 11,365,660
Granted Patent B2
US 11,365,660 · App. 15/618,625 · Granted Jun 21, 2022

NOx adsorber catalyst

Inventors: Andrew Armitage (Royston, GB); Desiree Duran Martin (Reading, GB); Rebecca Maksymowicz (Royston, GB); Paul James Millington (Reading, GB); Paul Richard Phillips (Royston, GB); Raj Rao Rajaram (Reading, GB); Stuart David Reid (Royston, GB); Daniel Swallow (Royston, GB)
Assignee: Johnson Matthey Public Limited Company
F01N3/0842B01D53/9418B01J20/0207B01J20/0225B01J20/06B01J20/08B01J20/28042B01J20/3085B01J20/3204B01J20/3236B01J23/005B01J23/63B01J37/0045B01J37/0201B01J37/0203B01J37/0234B01J37/08F01N3/0814F01N3/101F01N3/2066B01D53/9422B01D53/9454B01D53/9459B01D2255/1021B01D2255/1023B01D2255/2063B01D2255/2065B01D2255/405B01D2255/902B01D2255/91B01D2255/915B01D2255/9155B01D2258/012B01J35/04B01J37/0244B01J37/0248B01J2523/00F01N3/035F01N2370/02F01N2510/06F01N2510/0684F01N2570/14Y02T10/12
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Quick Facts
Patent No.
US 11,365,660
App. No.
15/618,625
Granted
Jun 21, 2022
Kind
B2
Abstract

A NO x adsorber catalyst and its use in an emission treatment system for internal combustion engines, is disclosed. The NO x adsorber catalyst comprises a first layer consisting essentially of a support material, one or more platinum group metals disposed on the support material, and a NO x storage material.

Claims (33)

1. An emission treatment system for treating a flow of a combustion exhaust gas comprising:

a lean-burn diesel engine;

a catalyst for treating emissions from the lean-burn diesel engine comprising a first layer having:

a support material containing alumina or a mixed oxide containing alumina;

a mixture or alloy of platinum and palladium disposed on the support material; and,

a NOx storage material which consists of lanthanum-doped ceria and comprises 1.0-15 mol % lanthanum; and,

a selective catalytic reduction catalyst system or a selective catalytic reduction filter system located downstream of the catalyst;

wherein the lean-burn diesel engine is in fluid communication with the catalyst;

wherein the first layer does not comprise rhodium.

2. The emission treatment system of claim 1 , wherein the NOx storage material comprises 2.0-14 mol % lanthanum.

3. The emission treatment system of claim 1 , wherein the NOx storage material is substantially free of barium.

4. The emission treatment system of claim 1 , wherein the first layer is substantially free of alkali metals.

5. The emission treatment system of claim 1 , wherein the first layer is substantially free of molecular sieves.

6. The emission treatment system of claim 1 , wherein the first layer is substantially free of dysprosium (Dy), erbium (Er), europium (Eu), gadolinium (Gd), holmium (Ho), lutetium (Lu), neodymium (Nd), praseodymium (Pr), promethium (Pm), samarium (Sm), scandium (Sc), terbium (Tb), thulium (Tm), ytterbium (Yb) and yttrium (Y).

7. The emission treatment system of claim 1 further comprising a metal or ceramic substrate and wherein said catalyst is disposed on said substrate or is extruded to form said substrate.

8. The emission treatment system of claim 7 , wherein the substrate is a flow-through monolith or a filter monolith.

9. A method of treating an exhaust gas from a lean-burn diesel engine comprising contacting the exhaust gas with the emission treatment system according to claim 1 , wherein the exhaust gas is at a temperature of 180 to 300° C.

10. A catalyst for treating emissions from a lean-burn diesel engine comprising a first layer having:

a support material containing alumina or a mixed oxide containing alumina;

a mixture or alloy of platinum and palladium disposed on the support material;

and a NOx storage material which consists of lanthanum-doped ceria and comprises 1.0-15 mol % lanthanum;

wherein the first layer does not comprise rhodium.

11. The catalyst of claim 10 , wherein the NOx storage material comprises 2.0-14 MORO lanthanum.

12. The catalyst of claim 10 , wherein the NOx storage material is substantially free of barium.

13. The catalyst of claim 10 , wherein the first layer is substantially free of alkali metals.

14. The catalyst of claim 10 , wherein the first layer is substantially free of molecular sieves.

15. The catalyst of claim 10 , wherein the first layer is substantially free of dysprosium (Dy), erbium (Er), europium (Eu), gadolinium (Gd), holmium (Ho), lutetium (Lu), neodymium (Nd), praseodymium (Pr), promethium (Pm), samarium (Sm), scandium (Sc), terbium (Tb), thulium (Tm), ytterbium (Yb) and yttrium (Y).

16. A catalyst article for absorbing NOx comprising a metal or ceramic substrate and a catalyst according to claim 10 , wherein said catalyst is disposed on the substrate or is extruded to form the substrate.

17. The catalyst article of claim 16 , wherein the substrate is a flow-through monolith or a filter monolith.

18. An emission treatment system for treating a flow of a combustion exhaust gas comprising a lean-burn diesel engine and the catalyst of claim 10 ;

wherein the lean-burn diesel engine is in fluid communication with the catalyst.

19. The emission treatment system of claim 18 , further comprising one or more of a selective catalytic reduction catalyst system, a particulate filter, a selective catalytic reduction filter system, a passive NOx adsorber, and a three-way catalyst system.

20. A method of treating an exhaust gas from an internal combustion engine comprising contacting the exhaust gas with the catalyst of claim 10 , wherein the exhaust gas is at a temperature of 180 to 300° C.

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 20, 2021
From: ARMITAGE, ANDREW PAUL; DURAN-MARTIN, DESIREE; MAKSYMOWICZ, REBECCA MARIE; MILLINGTON, PAUL JAMES; PHILLIPS, PAUL RICHARD; RAJARAM, RAJ RAO; REID, STUART DAVID; SWALLOW, DANIEL
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 056305/0867 →
Priority Claims (2)
GB 1610160 · Jun 10, 2016 · national
GB 1704901 · Mar 28, 2017 · national
Continuity (1)
Related Publication 20170356317A1 · Dec 14, 2017