EXHAUST GAS PURIFYING CATALYST AND METHOD FOR PURIFYING EXHAUST GAS USING THE CATALYST
A catalyst for exhaust gas purification of the present invention contains the thin-plate-like ceria (CeO 2 ) as a catalytic active component. According to the catalyst for exhaust gas purification of the present invention, among CO, HC, and NOx, which are hazardous components contained in exhaust gas, particularly, NOx, can be removed efficiently. The present invention can be used as, what is called a NOx trapping catalyst, which stores NOx in oxidizing atmosphere, and discharges and reduces NOx in reducing atmosphere.
1 . A catalyst for exhaust gas purification comprising thin-plate-like ceria (CeO 2 ) as a catalytic active component.
2 . The catalyst for exhaust gas purification according to claim 1 , wherein the thin-plate-like ceria has an average diameter equivalent to a circle of a planar direction, of 2 to 50 μm, and an average thickness of 0.01 to 1 μm.
3 . The catalyst for exhaust gas purification according to claim 1 , further comprising a refractory inorganic oxide as the catalytic active component.
4 . The catalyst for exhaust gas purification according to claim 1 , further comprising an oxide of at least one kind of element selected from the group consisting of alkali metals, alkaline earth metals, rare earth elements, manganese and tungsten, as the catalytic active component.
5 . The catalyst for exhaust gas purification according to claim 1 , further comprising a noble metal as the catalytic active component.
6 . The catalyst for exhaust gas purification according to of claim 1 , wherein the catalytic active component covers a three-dimensional structure.
7 . The catalyst for exhaust gas purification according to claim 6 , wherein supported amount of the catalytic active component is 10 to 400 g per 1 L of the three-dimensional structure.
8 . A method for producing the catalyst for exhaust gas purification, comprising:
(1) dispersing the catalytic active component comprising the thin-plate-like ceria (CeO 2 ) into an aqueous medium and carrying out wet milling to obtain slurry, and then immersing the three-dimensional structure into the resultant slurry, removing the excess slurry, drying and calcining;
(2) dispersing a noble metal-supported refractory inorganic oxide and the thin-plate-like ceria (CeO 2 ) into the aqueous medium, carrying out wet milling to obtain slurry, and then immersing the three-dimensional structure into the slurry, removing the excess slurry, drying and calcining;
(3) dispersing a refractory inorganic oxide and the thin-plate-like ceria (CeO 2 ) into the aqueous medium, carrying out wet milling to obtain slurry, then immersing the three-dimensional structure into the slurry, removing the excess slurry, drying and/or calcining, then immersing the three-dimensional structure obtained by drying/calcining in this way into an aqueous solution of a water-soluble noble metal salt, removing the excess aqueous solution, drying and calcining; or
(4) mixing slurry obtained by dispersing the thin-plate-like ceria (CeO 2 ) into the aqueous medium and then wet milling and slurry obtained by dispersing other catalytic active components into the aqueous medium and wet milling, immersing the three-dimensional structure into the resultant mixture, removing the excess mixture, drying and calcining.
9 . A method for purifying exhaust gas comprising a step for making exhaust gas contacted, to the catalyst for exhaust gas purification according to claim 1 .
10 . The catalyst for exhaust gas purification according to claim 2 , further comprising a refractory inorganic oxide as the catalytic active component.
11 . The catalyst for exhaust gas purification according to claim 2 , further comprising an oxide of at least one kind of element selected from the group consisting of alkali metals, alkaline earth metals, rare earth elements, manganese and tungsten, as the catalytic active component.
12 . The catalyst for exhaust gas purification according to claim 3 , further comprising an oxide of at least one kind of element selected from the group consisting of alkali metals, alkaline earth metals, rare earth elements, manganese and tungsten, as the catalytic active component.
13 . The catalyst for exhaust gas purification according to claim 10 , further comprising an oxide of at least one kind of element selected from the group consisting of alkali metals, alkaline earth metals, rare earth elements, manganese and tungsten, as the catalytic active component.
14 . The catalyst for exhaust gas purification according to claim 2 , further comprising a noble metal as the catalytic active component.
15 . The catalyst for exhaust gas purification according to claim 3 , further comprising a noble metal as the catalytic active component.
16 . The catalyst for exhaust gas purification according to claim 4 , further comprising a noble metal as the catalytic active component.
17 . The catalyst for exhaust gas purification according to claim 10 , further comprising a noble metal as the catalytic active component.
18 . The catalyst for exhaust gas purification according to claim 11 , further comprising a noble metal as the catalytic active component.
19 . The catalyst for exhaust gas purification according to claim 12 , further comprising a noble metal as the catalytic active component.
20 . The catalyst for exhaust gas purification according to claim 13 , further comprising a noble metal as the catalytic active component.