There is provided a particulate matter combustion catalyst which allows easy combustion of particulate matter collected on the particulate matter filter of a diesel vehicle, at a much lower temperature than by the prior art. The particulate matter combustion catalyst has a construction characterized
There is provided a particulate matter combustion catalyst which allows easy combustion of particulate matter collected on the particulate matter filter of a diesel vehicle, at a much lower temperature than by the prior art. The particulate matter combustion catalyst has a construction characterized by an NO oxidation catalyst wherein the catalyst component is carried on an acidic first carrier, and an NO2 decomposition catalyst wherein the catalyst component is carried on a second carrier. Preferably, the NO oxidation catalyst has a precious metal such as platinum carried on an acidic first carrier such as tungstic acid/zirconia, and the NO2 decomposition catalyst has a catalyst component selected from the transition metals carried on a second carrier such as titania, or alternatively, the NO2 decomposition catalyst has at least one metal selected from among alkali metals and alkaline earth metals and a precious metal such as platinum carried on a second carrier such as titania.
대표청구항▼
The invention claimed is: 1. A particulate matter combustion catalyst comprising an NO oxidation catalyst and an NO2 decomposition catalyst, wherein the NO oxidation catalyst comprises a catalyst component selected from the group consisting of platinum, gold, and mixtures thereof, carried on an aci
The invention claimed is: 1. A particulate matter combustion catalyst comprising an NO oxidation catalyst and an NO2 decomposition catalyst, wherein the NO oxidation catalyst comprises a catalyst component selected from the group consisting of platinum, gold, and mixtures thereof, carried on an acidic first carrier selected from the group consisting of silica, silica alumina, zeolite with an SiO2/Al2O3 ratio of 40 or greater, tungstic acid/zirconia, antimonic acid/alumina, and mixtures thereof, and the NO2 decomposition catalyst comprises a catalyst component selected from the group consisting of the transition metals selected from the group consisting of iron, manganese, cobalt, copper, nickel, vanadium, yttrium, zinc, niobium and molybdenum, carried on a second carrier selected from the group consisting of titania, zirconia, titania-zirconia, alumina, and mixtures thereof, and wherein the NO oxidation catalyst and the NO2 decomposition catalyst are separate powders present in a randomly mixed state in the particulate matter combustion catalyst. 2. A particulate matter combustion catalyst comprising an NO oxidation catalyst and an NO2 decomposition catalyst, wherein the NO oxidation catalyst comprises a catalyst component of platinum, carried on an acidic first carrier of tungstic acid/zirconia, and the NO2 decomposition catalyst comprises platinum and barium, carried on a second carrier alumina, and wherein the NO oxidation catalyst and the NO2 decomposition catalyst are separate powders present in a randomly mixed state in the particulate matter combustion catalyst. 3. A particulate matter combustion catalyst according to claim 1, wherein said NO oxidation catalyst and said NO2 decomposition catalyst are carried on a particulate matter filter. 4. A particulate matter combustion catalyst according to claim 2, wherein said NO oxidation catalyst and said NO2 decomposition catalyst are carried on a particulate matter filter. 5. The particulate matter combustion catalyst according to claim 1, wherein the NO oxidation catalyst is platinum carried on tungstic acid/zirconia, and the NO2 decomposition catalyst is iron carried on alumina.
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