IP Library Patent Application 18043090
Patent Application
App. No. 18/043,090

OXIDATION CATALYST COMPRISING A PLATINUM GROUP METAL AND A BASE METAL OR METALLOID OXIDE

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Patent No.
US None
App. No.
18/043,090
Abstract

The present disclosure relates to oxidation catalyst compositions comprising a platinum group metal (PGM) component comprising palladium, platinum, or a combination thereof; a first oxide chosen from oxides of cerium, silicon, iron, cobalt, zinc, chromium, molybdenum, nickel, tungsten, magnesium, antimony, tin, lead, yttrium, and combinations thereof; and a first refractory metal oxide support material; catalytic articles; and exhaust gas treatment systems, as well as methods of making and using such oxidation catalyst compositions.

Claims (48)

1 . An oxidation catalyst composition comprising:

a platinum group metal (PGM) component comprising palladium, platinum, or a combination thereof,

a first oxide chosen from oxides of cerium, silicon, iron, cobalt, zinc, chromium, molybdenum, nickel, tungsten, magnesium, antimony, tin, lead, yttrium, and combinations thereof, and

a first refractory metal oxide support material.

2 . The oxidation catalyst composition of claim 1 , wherein the first oxide is chosen from oxides of yttrium and silicon.

3 . The oxidation catalyst composition of claim 1 , comprising the first oxide in an amount by weight, on an oxide basis, from about 1% to about 90%, based on the weight of the first refractory metal oxide support material.

4 . The oxidation catalyst composition of claim 1 , wherein the first oxide is supported on the first refractory metal oxide support material.

5 . The oxidation catalyst composition of claim 1 , wherein the first refractory metal oxide support material comprises zirconia, titanium, or aluminum in an amount by weight from about 1% to about 99%, and the first refractory metal oxide support material optionally comprises alumina, silica, ceria, titanium oxide, silica-doped alumina, silica titania, silica-zirconia, yttrium-zirconium, manganese-zirconium, tungsten-titania, zirconia-titania, zirconia-ceria, zirconia-alumina, manganese-alumina, lanthanum-zirconia-alumina, magnesium-alumina oxide, zirconia doped with from about 0.1% to about 40% by weight of lanthana, and combinations thereof.

6 . (canceled)

7 . The oxidation catalyst composition of claim 1 , wherein:

the first oxide is an oxide of ceria, and

the ceria is present in an amount up to about 99% by weight, based on the weight of the first refractory metal oxide support material.

8 . The oxidation catalyst composition of claim 1 , wherein:

the first oxide is an oxide of yttrium, and

the yttrium is present in an amount up to about 99% by weight, based on the weight of the first refractory metal oxide support material.

9 . The oxidation catalyst composition of claim 1 , wherein:

the first oxide is an oxide of silicon, and

the silicon is present in an amount up to about 99% by weight, based on the weight of the first refractory metal oxide support material.

10 . The oxidation catalyst composition of claim 1 , wherein:

the palladium is loaded on the first refractory metal oxide support in an amount by weight from about 0% to about 10%, based on the weight of the first refractory metal oxide support;

the platinum is loaded on the first refractory metal oxide support in an amount by weight from about 0% to about 10%, based on the weight of the first refractory metal oxide support; and

wherein at least one of the platinum or the palladium is present in an amount by weight of about 0.1% or greater, based on the weight of the first refractory metal oxide support material.

11 . The oxidation catalyst composition of claim 1 , wherein the PGM component comprises a combination of platinum and palladium.

12 . The oxidation catalyst composition of claim 11 , wherein a ratio of palladium to platinum by weight is from about 100 to about 0.01 or from about 1 to about 0.01.

13 . (canceled)

14 . The oxidation catalyst composition of claim 1 , further comprising a second refractory metal oxide support material, wherein the second refractory metal oxide support material optionally comprises alumina, silica, zirconia, titania, ceria, silica-doped alumina, silica-titania, silica-zirconia, yttrium-zirconium, manganese-zirconium, tungsten-titania, zirconia-titania, zirconia-ceria, zirconia-alumina, manganese-alumina, lanthanum-zirconia, lanthanum-zirconia-alumina, magnesium-alumina oxide, or a combination thereof and the second refractory metal oxide support material optionally comprises a base metal oxide chosen from oxides of cerium, iron, cobalt, zinc, chromium, molybdenum, nickel, tungsten, copper, magnesium, antimony, tin, lead, yttrium, and combinations thereof.

15 . (canceled)

16 . (canceled)

17 . The oxidation catalyst composition of claim 14 , wherein the PGM component is supported on the second refractory metal oxide support material in an amount by weight from about 0.1% to about 10%, based on the weight of the second refractory metal oxide support material.

18 . The oxidation catalyst composition of claim 14 , wherein the second refractory metal oxide support material comprises alumina or zirconia, and the zirconia in the second refractory metal oxide support material is optionally doped with lanthanum in an amount by weight from about 0.1% to about 40%, on an oxide basis, based on the weight of the zirconia.

19 . (canceled)

20 . The oxidation catalyst composition of claim 14 , wherein the first oxide is supported on the first refractory metal oxide support material, and the PGM component is supported on the second refractory metal oxide support material, wherein the PGM component is supported on the second refractory metal oxide support material optionally in an amount from about 0.1% to about 10% by weight, based on the weight of the second refractory metal oxide support material.

21 . (canceled)

22 . The oxidation catalyst composition of claim 14 , wherein:

the first oxide is supported on the first refractory metal oxide support material in an amount by weight, on an oxide basis, from about 1% to about 40%, based on the weight of the first refractory metal oxide support material; and

the PGM component is supported on the second refractory metal oxide support material, wherein the second refractory metal oxide support material is chosen from alumina, silica-doped alumina, titania, titania-doped alumina, zirconium doped alumina, zirconia, and zirconia doped with from about 0.1% to about 40% by weight of lanthana, based on the weight of the zirconia.

23 . The oxidation catalyst composition of claim 22 , wherein the first oxide is chosen from oxides of yttrium and silicon.

24 . The oxidation catalyst composition of claim 22 , wherein the first refractory metal oxide support material comprises ceria in an amount by weight from about 1% to about 50%, based on the weight of the first refractory metal oxide support material.

25 . The oxidation catalyst composition of claim 1 , wherein the oxidation catalyst composition is substantially free of copper.

26 . A catalytic article comprising a substrate having an inlet end and an outlet end defining an overall length, and a catalytic coating disposed on at least a portion thereof, the catalytic coating comprising a first washcoat and a second washcoat, wherein:

the first washcoat comprises a first oxide and a first refractory metal oxide support material, wherein the first oxide is chosen from oxides of cerium, silicon, iron, cobalt, zinc, chromium, molybdenum, nickel, tungsten, magnesium, antimony, tin, lead, yttrium, and combinations thereof, and the first oxide is supported on the first refractory metal oxide support material; and

the second washcoat comprises a platinum group metal (PGM) component comprising palladium, platinum, or a combination thereof, and a second refractory metal oxide support material, wherein the PGM component is supported on the second refractory metal oxide support material.

27 .- 48 . (canceled)

49 . A catalytic article comprising a substrate having an inlet end and an outlet end defining an overall length, and a catalytic coating disposed on at least a portion thereof, the catalytic coating comprising a first washcoat, a second washcoat, and a third washcoat, wherein:

the first washcoat comprises a first oxide and a first refractory metal oxide support material, wherein the first oxide is chosen from oxides of yttrium and silicon, and the first oxide is supported on the first refractory metal oxide support material;

the second washcoat comprises a base metal oxide component comprising ceria, zirconia, lanthanum oxide, copper oxide, or a combination thereof, and a second refractory metal oxide support material, wherein the base metal oxide component is supported on the second refractory metal oxide support material; and

the third washcoat comprises a platinum group metal (PGM) component comprising palladium, platinum, or a combination thereof, and a third refractory metal oxide support material, wherein the PGM component is supported on the third refractory metal oxide support material.

50 .- 67 . (canceled)

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 Feb 27, 2023
From: KOEGEL, MARKUS
To: HTE GMBH THE HIGH THROUGHPUT EXPERIMENTATION COMPANY
Reel/Frame 062807/0915 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2023
From: HTE GMBH THE HIGH THROUGHPUT EXPERIMENTATION COMPANY
To: BASF CORPORATION
Reel/Frame 062807/0942 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2023
From: SUNG, SHIANG; HOKE, JEFFREY B.
To: BASF CORPORATION
Reel/Frame 062807/0977 →