Ammonia slip catalyst
View Patent ↗Provided is an ammonia slip catalyst article having supported palladium in a top or upstream layer for oxidation of carbon monoxide and/or hydrocarbons, an SCR catalyst either in the top layer or in a separate lower or downstream layer, and an ammonia oxidation catalyst in a bottom layer. Also provided are methods for treating an exhaust gas using the catalyst article, wherein the treatment involves reducing the concentrations of ammonia and optionally carbon monoxide and/or hydrocarbons in the exhaust gas.
1. A catalyst article for treating exhaust gas comprising a substrate having a first catalyst layer disposed on and/or within the substrate and a second catalyst layer coated over the first catalyst layer; wherein
the first catalyst layer comprises a first oxidation catalyst, wherein the first oxidation catalyst comprises a supported noble metal, and
the second catalyst layer contains a mixture of (i) a second oxidation catalyst consisting of supported palladium and (ii) a catalyst for selectively reducing NO x and/or storing NH 3 , wherein the catalyst for selectively reducing NO x and/or storing NH 3 is a Fe and/or Cu loaded zeolite; and
wherein the first and second oxidation catalysts are different formulations.
2. The catalyst article of claim 1 , wherein the second catalyst layer is essentially free of Ag, Au, Pt, Rh, Ru, Ir, and Os.
3. The catalyst article of claim 1 , wherein the first oxidation catalyst is Pt supported on metal oxide particles or a mixture of Pt and Pd supported on metal oxide particles.
4. The catalyst of claim 1 , wherein the substrate is a flow-through honeycomb having a wall porosity of about 50-65%.
5. The catalyst article of claim 4 , wherein a majority of the first catalyst layer is disposed within the substrate walls and a majority of the second catalyst layer is disposed on the surface of the substrate walls.
6. A catalyst article for treating an exhaust gas comprising:
a. a substrate;
b. a first catalyst layer disposed on and/or within the substrate, wherein the first catalyst layer comprises a first oxidation catalyst, and wherein the first oxidation catalyst comprises a supported noble metal;
c. a second catalyst layer disposed over the first catalyst layer, wherein the second catalyst layer contains a catalyst for selectively reducing NO x and/or storing NH 3 , wherein the catalyst for selectively reducing NO x and/or storing NH 3 is a Fe and/or Cu loaded zeolite; and
d. a third catalyst layer disposed over the second catalyst layer, wherein the third catalyst layer comprises a second oxidation catalyst consisting of supported Pd;
wherein the first and second oxidation catalysts are different formulations.
7. The catalyst article of claim 6 , wherein the third catalyst layer is essentially free of ruthenium, rhenium, rhodium, silver, osmium, iridium, platinum, gold, alkali and alkaline earth metals, and transition metals, except transition metals in the form of a metal oxide particle support for the palladium.
8. A catalyst article for treating an exhaust gas comprising:
a. a substrate;
b. a first catalyst layer disposed on and/or within the substrate, wherein the first catalyst layer comprises a first oxidation catalyst, and wherein the first oxidation catalyst comprises a supported noble metal;
c. a second catalyst layer disposed over the first catalyst layer, wherein the second catalyst layer contains a catalyst for selectively reducing NO x and/or storing NH 3 , wherein the catalyst for selectively reducing NO x and/or storing NH 3 is a Fe and/or Cu loaded zeolite; and
d. a third catalyst layer disposed upstream of the first and second catalyst layers, wherein the third catalyst layer comprises a second oxidation catalyst consisting of supported Pd;
wherein the first and second oxidation catalysts are different formulations.