Zeolite-containing oxidation catalyst and method of use
Abstract
Oxidation catalyst compositions for treating diesel exhaust include ceria and, optionally, alumina, each having a surface area of at least about 10 m 2 /g, and a zeolite, e.g., Beta zeolite. Optionally, platinum may be included in the catalytic material, preferably in amounts which are sufficient to promote some gas-phase oxidation of carbon monoxide (“CO”) and hydrocarbons (“HC”) but which are limited to preclude excessive oxidation of SO 2 to SO 3 . Alternatively, palladium in any desired amount may be included in the catalytic material. The zeolite is optionally doped, e.g., ion-exchanged, with one or more of hydrogen, a platinum group metal or other catalytic metals. The catalyst compositions may be used in a method to treat diesel engine exhaust by contacting the hot exhaust with the catalyst composition to promote the oxidation of gas-phase CO and HC and of the volatile organic fraction component of particulates in the exhaust.
Claims
exact text as granted — not AI-modified1 . A catalyst composition for treating a diesel engine exhaust stream containing a volatile organic fraction comprises a refractory carrier on which is disposed a coating of a catalytic material comprising a catalytically effective amount of a stabilized ceria having a BET surface area of at least about 10 m 2 /g and a catalytically effective amount of a zeolite.
2 . The catalyst composition of claim 1 further including a catalytically effective amount of alumina having a BET surface area of at least about 10 m 2 /g.
3 . (canceled)
4 . (canceled)
5 . The catalyst composition of claim 1 wherein the zeolite is selected from the group consisting of Beta zeolite, γ-zeolite, pentasil, Mordenite, and mixtures thereof.
6 . The catalyst composition of claim wherein the stabilized ceria is stabilized with alumina.
7 . The catalyst composition of claim 2 wherein the zeolite comprises from about 10 to 90 percent by weight, the alumina comprises from about 60 to percent by weight, and the ceria comprises from about 60 to 5 percent by weight, of the combined weight of the zeolite, the alumina and the ceria.
8 . (canceled)
9 . The catalyst composition of claim 1 wherein the zeolite is doped with a catalytic moiety selected from the group consisting of one or both of hydrogen, platinum, rhodium, palladium, ruthenium, osmium, iridium, copper, iron, nickel, chromium and vanadium.
10 . (canceled)
11 . The catalyst composition of claim 5 wherein the zeolite is Beta zeolite and the catalytic moiety comprises hydrogen.
12 . (canceled)
13 . (canceled)
14 . The catalyst composition of claim 2 wherein the zeolite is disposed in a discrete layer which is overlain by one or more discrete layers containing the alumina and the ceria.
15 . (canceled)
16 . The catalyst composition of claim 1 wherein the refractory carrier has a plurality of parallel exhaust flow passages extending therethrough and defined by passage walls on which the catalytic material is coated, and further comprising dispersed platinum carried on the catalytic material in an amount of from about 0.1 to about 60 g/ft 3 .
17 . (canceled)
18 . The catalyst composition of claim 16 wherein the refractory carrier has a plurality of parallel exhaust flow passages extending therethrough and defined by passage walls on which the catalytic material is coated, and at least a catalytically effective amount of the dispersed platinum is carried on the ceria.
19 . The catalyst composition of claim 1 wherein the refractory carrier has a plurality of parallel exhaust flow passages extending therethrough and defined by passage walls on which the catalytic material is coated, and further comprising dispersed palladium carried on the catalytic material in a quantity of from about 0.1 to 200 g/ 3 .
20 . (canceled)
21 . A method for treating a diesel engine exhaust stream containing a volatile organic fraction comprises contacting the stream with a catalyst composition under oxidizing conditions including a temperature high enough to catalyze oxidation of at least some of the volatile organic fraction, the catalyst composition comprising a catalytically effective amount of a stabilized ceria having a BET surface area of at least about 10 m 2 /g and a catalytically effective amount of a zeolite.
22 . The method of claim 21 wherein the catalyst composition further comprises a catalytically effective amount of alumina having a BET surface area of at least about 10 m 2 /g.
23 . (canceled)
24 . The method of claim 21 wherein the stabilized ceria is stabilized with alumina.
25 . The method of claim 21 wherein the zeolite is selected from the group consisting of Beta zeolite, Y-zeolite, pentasil, Mordenite and mixtures thereof.
26 . (canceled)
27 . (canceled)
28 . The method of claim 21 wherein the zeolite is doped with a catalytic moiety selected from the group consisting of one or both of hydrogen, platinum, rhodium, palladium, ruthenium, osmium, iridium, copper, iron, nickel, chromium and vanadium.
29 . (canceled)
30 . The method of claim 28 wherein the catalytic moiety comprises and hydrogen.
31 . (canceled)
32 . (canceled)
33 . (canceled)
34 . The method of claim 21 wherein the refractory carrier has a plurality of parallel exhaust stream flow passages extending therethrough and defined by passage walls on which the catalytic material is coated, and the catalyst material further comprises dispersed platinum carried thereon in an amount of from about 0.1 to 60 g/ft 3 .
35 . (canceled)
36 . (canceled)
37 . The method of claim 21 wherein the temperature of the exhaust stream initially contacted with the catalyst composition is from about 100° C. to 800° C.
38 . The method of claim 21 wherein the refractory carrier has a plurality of parallel exhaust stream flow passages extending therethrough and defined by passage walls on which the catalytic material is coated, and the catalytic material further comprises dispersed palladium carried thereon in the amount of from about 0.1 to 200 g/ft 3 .Join the waitlist — get patent alerts
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