Catalyst with highly annealed Pd layer
View Patent ↗The present invention relates to a method for producing a multilayer catalyst, to the multilayer catalyst produced by the method, and to the use of the catalyst for after-treatment of exhaust gases.
1. A method for producing a multilayer catalyst for exhaust gas after-treatment of combustion exhaust gases, comprising the following steps:
a) providing a substrate having a surface which contacts the gases to be cleaned;
b) preparing a first catalytically effective composition by placing a first oxygen storage material comprising Ce x Cr y O z , wherein z=2, x>0.5, y<0.5 and x+y=1 in water, adding a solution comprising a palladium salt to obtain a first slurry, and placing aluminum oxide into the first slurry,
c) applying the first catalytically effective composition comprising the first oxygen storage material and the palladium salt onto the surface of the substrate to produce a first layer (A);
d) annealing the first layer (A) at a first temperature T 1 in a range of 550 to 700° C. for a period of time t 1 of five minutes or more;
e) subsequently annealing the first layer (A) at a second temperature T 2 in a range of 700 to 1200° C. which is 100 to 400° C. higher than T 1 ;
f) preparing a second catalytically effective composition by placing a second oxygen storage material in water, adding a solution comprising at least one of a platinum salt and a rhodium salt to obtain a second slurry, and placing aluminum oxide into the second slurry;
g) applying the second catalytically effective composition comprising at least one of a platinum salt and a rhodium salt to produce a second layer (B), wherein the second layer (B) fully or partially covers the annealed layer (A); and
h) annealing the second layer (B) at a third temperature T 3 in a range of 400 to 700° C.
2. The method according to claim 1 , wherein at least one of the first layer (A) and the second layer (B) is heated at a temperature of 200° C. or less in a flow of gas before the annealing.
3. The method according to claim 1 , wherein the first layer (A) comprises a palladium fraction of 0.05 wt. % to 10 wt. % relative to the total composition of the first layer (A) being 100 wt. %.
4. The method according to claim 1 , wherein the first oxygen storage material and the second oxygen storage material are different from each other.
5. The method according to claim 1 , wherein a mass ratio of platinum to rhodium in the second layer (B) is 9:1 to 1:9.
6. The method according to claim 1 , wherein the catalytically effective composition of the second layer (B) comprises at least one of a platinum and a rhodium fraction of 0.005 wt. % to 2.00 wt. % relative to the total composition of the second layer (B) being 100 wt. %.
7. The method according to claim 1 , wherein the annealing at the temperatures T 1 , T 2 , and T 3 takes place for a duration of ten to thirty minutes each.
8. The method according to claim 1 , wherein T 1 is 550 to 650° C. and T 2 is 750 to 950° C.