IP Library Granted Patent US 11,154,847
Granted Patent B2
US 11,154,847 · App. 16/619,861 · Granted Oct 26, 2021

Catalytic article and exhaust gas treatment systems

Inventors: Joseph A. Patchett (Iselin, NJ); Kevin Beard (Hannover, DE); Edgar Viktor Huennekes (Hannover, DE); Robert Dorner (Hannover, DE); Kevin A Hallstrom (Iselin, NJ); Ansgar Wille (Hannover, DE); Kenneth E Voss (Iselin, NJ); Martin Kalwei (Hannover, DE)
Assignee: BASF Corporation
B01J35/0006B01D53/944B01D53/9418B01D53/9436B01D53/9468B01D53/9472B01J21/063B01J23/10B01J23/30B01J23/44B01J29/763B01J35/04B01J37/0228B01J37/0236B01J37/0244B01J37/08F01N3/2066F01N3/2825B01D2255/1023B01D2255/20761B01D2255/50B01D2255/9022B01D2255/9155F01N2330/02F01N2330/30F01N2370/04F01N2510/063
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Quick Facts
Patent No.
US 11,154,847
App. No.
16/619,861
Granted
Oct 26, 2021
Kind
B2
Abstract

The present invention relates to a catalytic article comprising a substrate having a catalyst composition disposed thereon, wherein the catalyst composition comprises a platinum group metal impregnated onto a porous support and a selective catalytic reduction catalyst, wherein the catalyst composition is substantially free of platinum; and wherein the catalytic article is effective in the abatement of nitrogen oxides (NOx) and hydrocarbons (HCs). The present invention further relates to exhaust gas treatment systems for treating an exhaust gas stream exiting a diesel engine.

Claims (45)

1. A catalytic article comprising:

a substrate having a catalyst composition disposed thereon, wherein the catalyst composition comprises a platinum group metal impregnated onto a porous support and a selective catalytic reduction catalyst;

wherein the catalyst composition is substantially free of platinum;

wherein the catalytic article is effective in the abatement of nitrogen oxides (NO x ) and hydrocarbons (HCs); and

wherein the catalyst composition consists of a single layer.

2. The catalytic article of claim 1 , wherein the selective catalytic reduction catalyst comprises a mixed metal oxide component, wherein the mixed metal oxide component is selected from FeTiO 3 , FeAl 2 O 3 , MgTiO 3 , MgAlO 3 , MnO x /TiO 2 , CuTiO 3 , CeZrO 2 , TiZrO 2 , V 2 O 5 /TiO 2 , and mixtures thereof.

3. The catalytic article of claim 1 , wherein the platinum group metal impregnated onto a porous support is palladium impregnated onto zirconia and the selective catalytic reduction catalyst comprises one or more of a mixed metal oxide and a zeolite comprising one or more of Cu and Fe.

4. The catalytic article of claim 3 , wherein the selective catalytic reduction catalyst comprises a zeolite comprising Cu.

5. An emission treatment system for treatment of an exhaust gas stream, the emission treatment system comprising:

an engine producing an exhaust gas stream;

the catalytic article according to claim 1 positioned downstream from the engine in fluid communication with the exhaust gas stream and adapted for the reduction of NOx and HCs within the exhaust stream to form a treated exhaust gas stream; and

an injector adapted for the addition of a reductant to the exhaust gas stream upstream of the catalytic article.

6. An exhaust gas treatment system for treating an exhaust gas stream exiting a diesel engine, said exhaust gas treatment system having an upstream end for introducing said exhaust gas stream into said exhaust gas treatment system, wherein said exhaust gas treatment system comprises

(i) a first catalyst having an inlet end and an outlet end and comprising a coating disposed on a substrate, wherein the coating comprises palladium supported on an oxidic material comprising zirconium and further comprises one or more of a vanadium oxide and a zeolitic material comprising one or more of copper and iron; or a first catalyst having an inlet end and an outlet end and being the catalytic article according to claim 1 ;

(ii) a second catalyst having an inlet end and an outlet end and comprising a coating disposed on a substrate, wherein the coating comprises a platinum group metal supported on an oxidic material and further comprises one or more of a vanadium oxide, a tungsten oxide and a zeolitic material comprising one or more of copper and iron;

wherein the first catalyst according to (i) is the first catalyst of the exhaust gas treatment system downstream of the upstream end of the exhaust gas treatment system and wherein the inlet end of the first catalyst is arranged upstream of the outlet end of the first catalyst;

wherein in the exhaust gas treatment system, the second catalyst according to (ii) is located downstream of the first catalyst according to (i) and wherein the inlet end of the second catalyst is arranged upstream of the outlet end of the second catalyst.

7. The exhaust gas treatment system of claim 6 , wherein the coating of the first catalyst comprises palladium supported on an oxidic material comprising zirconium, wherein from 99 to 100 weight-% of the oxidic material consist of zirconium and oxygen and comprises a zeolitic material comprising one or more of copper and iron.

8. A catalyst for the selective catalytic reduction of NOx and for the oxidation of a hydrocarbon, comprising a single layer coating disposed on a substrate, wherein the coating comprises palladium supported on an oxidic material comprising zirconium, and further comprises a zeolitic material having a framework structure of the type CHA and comprising one or more of copper and iron,

wherein from 0 weight-% to 2 weight-% of the oxidic material consist of ceria and alumina.

9. The catalyst of claim 8 , wherein from 90 to 100 weight-% of the oxidic material comprised in the coating consist of zirconium and oxygen.

10. The catalyst of claim 8 , wherein the coating comprises a zeolitic material comprising one or more of copper and iron.

11. A method for preparing a catalyst comprising

(A) preparing a first mixture comprising palladium, an oxidic material comprising zirconium, and water,

(B) preparing a second mixture comprising a solvent and one or more of a vanadium oxide and a zeolitic material comprising one or more of copper and iron;

(C) mixing the first mixture obtained in (A) and the second mixture obtained in (B) obtaining a slurry;

(D) disposing the slurry obtained in (C) on a substrate, obtaining a slurry-treated substrate;

(E) optionally, drying the slurry-treated substrate obtained in (D), obtaining a substrate having a coating disposed thereon; and

(F) calcining the slurry-treated substrate obtained in (D) to obtain the catalyst, wherein the catalyst consists of a single layer.

12. An exhaust gas treatment system for treating an exhaust gas stream leaving a diesel engine, said exhaust gas treatment system having an upstream end for introducing said exhaust gas stream into said exhaust gas treatment system, wherein said exhaust gas treatment system comprises

(i) a first catalyst being a diesel oxidation (DOC) catalyst, having an inlet end and an outlet end and consisting of a coating and a substrate wherein the coating is disposed on internal walls of the substrate, wherein the substrate has an inlet end, an outlet end and a substrate length extending from the inlet end to the outlet end of the substrate and comprises a plurality of passages defined by the internal walls of the substrate, wherein the coating comprises palladium supported on an oxidic material comprising one or more of zirconium, silicon, aluminum and titanium, wherein from 99 weight-% to 100 weight-% of the coating of the first catalyst consist of palladium supported on an oxidic material comprising one or more of zirconium, silicon, aluminum and titanium;

(ii) a second catalyst having an inlet end and an outlet end and comprising a coating and a substrate wherein the coating is disposed on internal walls of the substrate, wherein the substrate has an inlet end, and outlet end and a substrate length extending from the inlet end to the outlet end of the substrate and comprises a plurality of passages defined by the internal walls of the substrate, wherein the coating of the second catalyst comprises a platinum group metal supported on an oxidic material and one or more of a vanadium oxide and a zeolitic material comprising one or more of copper and iron; or

a second catalyst having an inlet end and an outlet end and being the catalytic article according to claim 1 ;

wherein the first catalyst according to (i) is the first catalyst of the exhaust gas treatment system downstream of the upstream end of the exhaust gas treatment system and wherein the inlet end of the first catalyst is arranged upstream of the outlet end of the first catalyst;

wherein in the exhaust gas treatment system, the second catalyst according to (ii) is located downstream of the first catalyst according to (i) and wherein the inlet end of the second catalyst is arranged upstream of the outlet end of the second catalyst;

wherein the outlet end of the first catalyst according to (i) is in fluid communication with the inlet end of the second catalyst according to (ii) and wherein between the outlet end of the first catalyst according to (i) and the inlet end of the second catalyst according to (ii), no catalyst for treating the exhaust gas stream exiting the first catalyst is located in the exhaust gas treatment system.

13. The exhaust gas treatment system of claim 12 , wherein the oxidic material comprised in the coating of the first catalyst according to (i) comprises one or more of zirconium and aluminum.

14. The exhaust gas treatment system of claim 12 , wherein the coating of the first catalyst comprises palladium at a loading, calculated as elemental palladium, in the range of from 0.18 g/l to 3.53 g/l (5 to 100 g/ft 3 ).

15. The exhaust gas treatment system of claim 12 , wherein the coating of the second catalyst comprises a zeolitic material comprising one or more of copper and iron, wherein the zeolitic material comprised in the coating of the second catalyst has a framework structure of the type AEI, GME, CHA, MFI, BEA, FAU, MOR or mixtures of two or more thereof; or

wherein the coating of the second catalyst according to (ii) comprises a vanadium oxide;

wherein the vanadium oxide optionally contains one or more of tungsten, iron and antimony.

16. The exhaust gas treatment system of claim 12 , further comprising an ammonia oxidation catalyst located downstream of the second catalyst according to (ii), wherein the ammonia oxidation catalyst has an inlet end and an outlet end, wherein the outlet end of the second catalyst according to (ii) is in fluid communication with the inlet end of the ammonia oxidation catalyst and wherein between the outlet end of the second catalyst according to (ii) and the inlet end of the ammonia oxidation catalyst, no catalyst for treating the exhaust gas exiting the second catalyst is located in the exhaust gas treatment system.

17. A method for a simultaneous selective catalytic reduction of NOx, an oxidation of hydrocarbon, an oxidation of nitrogen monoxide and an oxidation of ammonia, comprising

(1) providing an exhaust gas stream from a diesel engine comprising one or more of NOx, ammonia, nitrogen monoxide and a hydrocarbon; and

(2) passing the exhaust gas stream provided in (1) through the exhaust gas system according to claim 6 .

Assignments (4)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 8, 2024
From: BASF CORPORATION
To: BASF MOBILE EMISSIONS CATALYSTS LLC
Reel/Frame 068518/0394 →
CORRECTIVE ASSIGNMENT TO CORRECT THE DOCUMENT DATE PREVIOUSLY RECORDED ON REEL 051195 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 24, 2020
From: BEARD, KEVIN; HUENNEKES, EDGAR VIKTOR; DORNER, ROBERT; WILLE, ANSGAR; KALWEI, MARTIN
To: BASF CATALYSTS GERMANY GMBH
Reel/Frame 052004/0027 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2019
From: PATCHETT, JOSEPH A; HALLSTROM, KEVIN A; VOSS, KENNETH E
To: BASF CORPORATION
Reel/Frame 051194/0940 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2019
From: BEARD, KEVIN; HUENNEKES, EDGAR VIKTOR; DORNER, ROBERT; WILLE, ANSGAR; KALWEI, MARTIN
To: BASF CATALYSTS GERMANY GMBH
Reel/Frame 051195/0001 →
Priority Claims (2)
EP 18150185 · Jan 3, 2018 · regional
EP 18150188 · Jan 3, 2018 · regional
Continuity (2)
Provisional Application 62517343 · Jun 9, 2017
Related Publication 20210069688A1 · Mar 11, 2021
Cited By (3)
US 12,246,311 US 12,390,764 US 12,629,662