TRANSITION METAL INCORPORATED ALUMINA FOR IMPROVED THREE WAY CATALYSTS
A three-way catalyst article, and its use in an exhaust system for internal combustion engines, is disclosed. In particular, provided is a catalyst article for treating exhaust gas comprising: a substrate comprising an inlet end and an outlet end with an axial length L; and a first catalytic region on the substrate; wherein the first catalytic region comprises a first PGM component and a first alumina, wherein the first alumina is doped with from 0.01 to less than 5.0 wt. % Ta, based on the total weight of the doped alumina.
1 . A catalyst article for treating exhaust gas comprising:
a substrate comprising an inlet end and an outlet end with an axial length L; and
a first catalytic region on the substrate;
wherein the first catalytic region comprises a first PGM component and a first alumina,
wherein the first alumina is doped with from 0.01 to less than 5.0 wt. % Ta, based on the total weight of the doped alumina.
2 . The catalyst article of claim 1 , wherein the first alumina is doped with from 0.1 to less than 5.0 wt. % Ta, based on the total weight of the doped alumina.
3 . The catalyst article of claim 1 , wherein the first alumina comprises a further dopant comprising one or more of lanthanum, neodymium, yttrium, niobium, praseodymium, hafnium, molybdenum, titanium, vanadium, zinc, cadmium, copper, silicon, calcium, barium, strontium, caesium, magnesium, potassium and sodium, preferably one or more of lanthanum, neodymium, praseodymium, hafnium and yttrium.
4 . The catalyst article of claim 4 , wherein the further dopant comprises lanthanum.
5 . The catalyst article of claim 4 , wherein the further dopant is present in the first alumina in an amount of from 0.01 to 10.0 wt. %, preferably from 0.1 to 8.0 wt. %, based on the total weight of the doped alumina.
6 . The catalyst article of claim 1 , wherein the first PGM component comprises Rh, preferably wherein the first PGM component consists of Rh.
7 . The catalyst article of claim 6 , wherein the first catalytic region is substantially free of PGMs other than Rh.
8 . The catalyst article of claim 1 , wherein the first catalytic region further comprises a first oxygen storage capacity (OSC) material, and/or a first alkali and/or alkali earth metal component.
9 . The catalyst article of claim 1 , wherein the first PGM component is supported on the first alumina.
10 . The catalyst article of claim 1 , further comprising a second catalytic region.
11 . The catalyst article of claim 10 , wherein the second catalytic region comprises a second PGM component.
12 . The catalyst article of claim 11 , wherein the second PGM component comprises one or more of Pt, Pd, Rh, and mixtures or alloys thereof.
13 . The catalyst article of claim 10 , wherein the second catalytic region further comprises a second oxygen storage capacity (OSC) material, a second alkali and/or alkali earth metal component, and/or a second inorganic oxide.
14 . The catalyst article of claim 10 , wherein the second catalytic region is supported/deposited directly on the substrate.
15 . The catalyst article of claim 14 , wherein the first catalytic region is supported/deposited directly on the second catalytic region.
16 . The catalyst article of claim 10 , wherein the first catalytic region is supported/deposited directly on the substrate.
17 . The catalyst article of claim 16 , wherein the second catalytic region is supported/deposited directly on the first catalytic region.
18 . An exhaust gas treatment system for treating a flow of a combustion exhaust gas, the exhaust gas treatment system comprising the catalyst article of claim 1 .
19 . A fuel combustion and exhaust gas treatment system comprising an engine and the exhaust gas treatment system of claim 18 .
20 . The fuel combustion and exhaust gas treatment system of claim 19 , wherein the engine is a gasoline engine.