IP Library Granted Patent US 12,599,894
Granted Patent B2
US 12,599,894 · App. 17/595,321 · Granted Apr 14, 2026

Catalytic article and method of manufacturing the catalytic article

Inventors: Shiang Sung (Iselin, NJ); Xiaolai Zheng (Iselin, NJ); Aleksei Vjunov (Iselin, NJ); Chunxin Ji (Iselin, NJ); Karifala Dumbuya (Hannover, DE)
Assignee: BASF Mobile Emissions Catalysts LLC
B01J23/464B01D53/945B01J23/10B01J35/19B01J35/56B01J37/038B01J37/04B01J37/082F01N3/101F01N3/2828F01N3/2842B01D2255/1021B01D2255/1025B01D2255/2065B01D2255/2092B01D2255/407B01D2255/9022B01D2255/908B01J35/57F01N2330/02F01N2330/06F01N2370/02
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Quick Facts
Patent No.
US 12,599,894
App. No.
17/595,321
Granted
Apr 14, 2026
Kind
B2
Abstract

The presently claimed invention provides a catalytic article and an exhaust gas treatment system. The catalytic article comprises platinum supported on a first support comprising ceria containing metal oxide component; rhodium supported on a second support selected from a refractory alumina component, an oxygen storage component or a combination thereof; and a substrate, wherein said catalytic article is essentially free of palladium. The presently claimed invention also provides a process for preparing the catalytic article and use of the catalytic article and the exhaust gas treatment system for purifying a gaseous exhaust stream comprising hydrocarbons, carbon monoxide, and nitrogen oxide.

Claims (29)

1 . A catalytic article comprising:

a bi-layered article comprising:

platinum supported on a first support comprising a ceria containing metal oxide component selected from ceria-alumina, ceria-yttrium-alumina, ceria-silica-alumina, ceria-tin-alumina, ceria-manganese alumina, ceria-iron-alumina, ceria-nickel-alumina, ceria-iridium-alumina, ceria-ruthenium-alumina, ceria-indium-alumina, ceria-titania-alumina ceria-titania, or any combination thereof, wherein the ceria content of the ceria-containing metal oxide component ranges from 1.0 wt. % to 80.0wt. %, based on the total weight of the ceria-containing metal oxide component;

rhodium supported on a second support chosen from a refractory alumina component, an oxygen storage component, and a combination thereof; and

a substrate,

wherein the catalytic article is essentially free of palladium; and

wherein the catalytic article exhibits hydrothermal stability at an aging temperature of greater than 950° C.

2 . The catalytic article according to claim 1 , wherein the first support further comprises a refractory alumina component.

3 . The catalytic article according to claim 1 , wherein the second support comprises a combination of a refractory alumina component and an oxygen storage component.

4 . The catalytic article according to claim 1 , wherein the catalytic article is a bi-layered article comprising a first layer, a second layer, and a substrate, wherein the first layer comprises platinum supported on a ceria containing metal oxide component and a refractory alumina component, deposited on the substrate, and the second layer comprises rhodium supported on a support chosen from a refractory alumina component, an oxygen storage component, and a combination thereof, deposited on the first layer.

5 . The catalytic article according to claim 1 , wherein the catalytic article is a bi-layered article comprising a first layer, a second layer, and a substrate, wherein the first layer comprises rhodium supported on a support chosen from a refractory alumina component, an oxygen storage component, and a combination thereof, deposited on the substrate, and the second layer comprises platinum supported on a ceria containing metal oxide component and refractory alumina component deposited on the first layer.

6 . The catalytic article according to claim 1 , wherein the amount of platinum ranges from 0.1 wt. % to 10.0 wt. %, based on the total weight of the first support and the amount of rhodium ranges from 0.1 wt. % to 10.0 wt. %, based on the total weight of the second support.

7 . The catalytic article according to claim 1 , wherein the ceria content of the ceria-containing metal oxide component ranges from 5.0 wt. % to 50.0 wt. %, based on the total weight of the ceria-containing component.

8 . The catalytic article according to claim 1 , wherein the ceria content of the ceria-containing metal oxide component ranges from 5.0 wt. % to 30 wt. %, based on the total weight of the ceria-containing component.

9 . The catalytic article according to claim 1 , wherein the refractory alumina component comprises alumina, lanthana-alumina, ceria-alumina, titania-alumina, ceria-zirconia-alumina, zirconia-alumina, lanthana-zirconia-alumina, baria-alumina, baria-lanthana-alumina, baria-lanthana-neodymia-alumina, or any combination thereof.

10 . The catalytic article according to claim 1 , wherein the oxygen storage component comprises ceria-zirconia, ceria-zirconia-lanthana, ceria-zirconia-yttria, ceria-zirconia-lanthana-yttria, ceria-zirconia-neodymia, ceria-zirconia-praseodymia, ceria-zirconia-lanthana-neodymia, ceria-zirconia-lanthana-praseodymia, ceria-zirconia-lanthana-neodymia-praseodymia, or any combination thereof.

11 . The catalytic article according to claim 1 , wherein the oxygen storage component comprises ceria in an amount ranging from 5.0 wt. % to 100 wt. %, based on the total weight of the oxygen storage component.

12 . The catalytic article according to claim 1 , wherein the catalytic article is loaded with an amount ranging from 1.0 g/ft 3 to 300 g/ft 3 of platinum supported on the ceria containing metal oxide component and an amount ranging from 1.0 g/ft 3 to 100 g/ft 3 of rhodium supported on a support chosen from a refractory alumina component, an oxygen storage component or any combination thereof.

13 . The catalytic article according to claim 1 , wherein platinum is thermally or chemically fixed.

14 . The catalytic article according to claim 1 , wherein the amount of palladium is less than 0.001 wt. %, based on the total weight of the support in the catalytic article.

15 . The catalytic article according to claim 1 , wherein the substrate is chosen from a ceramic substrate, a metal substrate, a ceramic foam substrate, a polymer foam substrate, and a woven fibre substrate.

16 . The catalytic article according to claim 1 , wherein the catalytic article is essentially free of barium oxide.

17 . A process for the preparation of a catalytic article according to claim 1 , wherein process comprises preparing a slurry comprising platinum supported on a first support comprising a ceria containing metal oxide component and optionally a refractory alumina component, and rhodium supported on a second support chosen from a refractory alumina component, an oxygen storage component, and a combination thereof, depositing the slurry on a substrate to obtain a catalytic article followed by calcination at a temperature ranging from 400° C. to 700° C., wherein the step of preparing the slurry comprises a technique chosen from incipient wetness impregnation, incipient wetness co-impregnation, and post-addition.

18 . A process for the preparation of a catalytic article according to claim 1 , wherein the process comprises preparing a first layer slurry comprising platinum supported on a first support comprising a ceria containing metal oxide component and optionally a refractory alumina component, and a second layer slurry comprising rhodium supported on a second support chosen from a refractory alumina component, an oxygen storage component, and a combination thereof; depositing the first layer slurry on a substrate to obtain a first layer and depositing the second layer slurry on the first layer to obtain a second layer, followed by calcining at a temperature ranging from 400° C. to 700° C., wherein the step of preparing the slurry comprises a technique chosen from incipient wetness impregnation, incipient wetness co-impregnation, and post-addition.

19 . An exhaust gas treatment system for internal combustion engines, the system comprising the catalytic article according to claim 1 .

20 . The exhaust gas treatment system according to claim 19 , wherein the system comprises a platinum group metal based three-way conversion (TWC) catalytic article and the catalytic article, wherein the platinum group metal based three-way conversion (TWC) catalytic article is positioned downstream from an internal combustion engine and the catalytic article is positioned downstream in fluid communication with the platinum group metal based three-way conversion (TWC) catalytic article.

21 . The exhaust gas treatment system according to claim 19 , wherein the system comprises a platinum group metal based three-way conversion (TWC) catalytic article and the catalytic article, wherein the catalytic article is positioned downstream from an internal combustion engine and the platinum group metal based three-way conversion (TWC) catalytic article is positioned downstream in fluid communication with the three-way conversion (TWC) catalytic article.

22 . A method of treating a gaseous exhaust stream comprising hydrocarbons, carbon monoxide, and nitrogen oxide, wherein the method comprises contacting the exhaust stream with the catalytic article according to claim 1 .

23 . A method of reducing hydrocarbons, carbon monoxide, and nitrogen oxide levels in a gaseous exhaust stream, the method comprising contacting the gaseous exhaust stream with the catalytic article according to claim 1 to reduce the levels of hydrocarbons, carbon monoxide, and nitrogen oxide in the exhaust gas.

Assignments (4)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 8, 2024
From: BASF CORPORATION
To: BASF MOBILE EMISSIONS CATALYSTS LLC
Reel/Frame 068518/0394 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2021
From: DUMBUYA, KARIFALA
To: BASF CATALYSTS GERMANY GMBH
Reel/Frame 058119/0337 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2021
From: SUNG, SHIANG; ZHENG, XIAOLAI; VJUNOV, ALEKSEI; JI, CHUNXIN
To: BASF CORPORATION
Reel/Frame 058119/0379 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2021
From: BASF CATALYSTS GERMANY GMBH
To: BASF CORPORATION
Reel/Frame 058119/0397 →
Priority Claims (1)
EP 19185912 · Jul 12, 2019 · regional
Continuity (2)
Provisional Application 62867351 · Jun 27, 2019
Related Publication 20220212170A1 · Jul 7, 2022
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