TINY TRANSITION METAL INCORPORATED CATALYSTS FOR GASOLINE ENGINE EXHAUST GAS TREATMENTS
A three-way catalyst article, and its use in an exhaust system for internal combustion engines, is disclosed. The catalyst article for treating exhaust gas comprising: a substrate comprising an inlet end and an outlet end with an axial length L; a first catalytic region comprising a first platinum group metal (PGM) component and a first transition metal component, wherein the first PGM component comprises platinum (Pt), and the first transition metal component is Fe or Cu, and wherein the molar ratio of Pt and the first transition metal is from 0.2 to 10.0.
1 . A catalyst composition comprising a platinum group metal (PGM) component and a transition metal component, wherein the PGM component comprises platinum (Pt), and the transition metal component is Fe or Cu, and wherein the molar ratio of Pt to the transition metal is from 0.2 to 10.0.
2 . The catalyst composition of claim 1 further comprises an oxygen storage capacity (OSC) material, an inorganic oxide, and/or an alkali or alkaline earth metal.
3 . The catalyst composition of claim 2 , wherein the OSC material is selected from the group consisting of cerium oxide, zirconium oxide, a ceria-zirconia mixed oxide, and an alumina-ceria-zirconia mixed oxide.
4 . The catalyst composition of claim 2 , wherein the inorganic oxide is selected from the group consisting of alumina, magnesia, silica, ceria, barium oxides, and mixed oxides or composite oxides thereof.
5 . The catalyst composition of claim 2 , wherein the alkali or alkaline earth metal is barium, or strontium, and mixed oxides or composite oxides thereof.
6 . The catalyst composition of claim 2 , wherein the catalyst composition is substantially free of barium.
7 . The catalyst composition of claim 1 , wherein the PGM component further comprises palladium, rhodium, or a mixture thereof.
8 . The catalyst composition of claim 2 , wherein the Pt loading is 0.2-10 wt %.
9 . The catalyst composition of claim 1 , wherein the molar ratio of Pt to the transition metal is from 0.2 to 5.0.
10 . A catalytic article for treating exhaust gas comprising:
a substrate comprising an inlet end and an outlet end with an axial length L;
a first catalytic region comprising a first platinum group metal (PGM) component and a first transition metal component, wherein the first PGM component comprises platinum (Pt), and the first transition metal component is Fe or Cu, and wherein the molar ratio of Pt and the first transition metal is from 0.2 to 10.0.
11 . The catalytic article of claim 10 , wherein the first catalytic region further comprises a first oxygen storage capacity (OSC) material and/or a first inorganic oxide.
12 . The catalytic article of claim 11 , wherein the first OSC material is selected from the group consisting of cerium oxide, a ceria-zirconia mixed oxide, and an alumina-ceria-zirconia mixed oxide.
13 . The catalytic article of claim 11 , wherein the first inorganic oxide is selected from the group consisting of alumina, magnesia, silica, zirconia, lanthanum, cerium, neodymium, praseodymium, yttrium oxides, and mixed oxides or composite oxides thereof.
14 . The catalytic article of claim 10 , wherein the molar ratio of Pt to the first transition metal in the first catalytic region is from 0.2 to 5.0.
15 . The catalytic article of claim 10 , wherein the first catalytic region contains 0.1-10 wt % of the first transition metal component, based on element.
16 . The catalytic article of claim 10 , wherein the Pt loading in the first catalytic region is 5-300 g/ft 3 .
17 . The catalytic article of claim 10 , wherein the first PGM component further comprises Pd, Rh, or a combination thereof.
18 . The catalytic article of claim 10 , further comprising a second catalytic region.
19 . The catalytic article of claim 18 , wherein the second catalytic region comprises a 20 second PGM component.
20 . The catalytic article of any one of claim 19 , wherein the second catalytic region further comprises a second OSC material and/or a second inorganic oxide.