Ammonia slip catalyst with in-situ PT fixing
The invention relates to a catalytic article comprising a substrate having an inlet and an outlet; a first coating comprising a blend of: (1) platinum on a support, and (2) a first SCR catalyst comprising a Cu- and Mn-exchanged molecular sieve; and a second coating comprising a second SCR catalyst; wherein the support comprises at least one of a zeolite or a SiO 2 -Al 2 O 3 mixed oxide. The platinum may be fixed on the support in solution.
1. A catalytic article comprising
a substrate having an inlet and an outlet;
a first coating comprising a blend of: (1) platinum on a support, and (2) a first SCR catalyst; and
a second coating comprising a second SCR catalyst;
wherein the support comprises at least one of a molecular sieve or a SiO 2 -Al 2 O 3 mixed oxide, and
wherein the first SCR catalyst comprises a Cu- and Mn-exchanged molecular sieve.
2. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises a small pore molecular sieve.
3. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises AEI, CHA, or combinations thereof.
4. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve is essentially free of any transition metals beyond the Cu and Mn.
5. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises Cu and Mn in a combined amount of about 0.10 to about 10% by weight of the Cu- and Mn-exchanged molecular sieve.
6. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises Cu in an amount of about 0.05 to about 5% by weight of the Cu- and Mn-exchanged molecular sieve.
7. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises Mn in an amount of about 0.05 to about 5% by weight of the Cu- and Mn-exchanged molecular sieve.
8. The catalytic article of claim 1 , wherein the first SCR catalyst molecular sieve comprises Cu and Mn in a weight ratio of about 0.1 to about 50.
9. The catalytic article of claim 1 , wherein the platinum is fixed on the support in solution.
10. The catalytic article of claim 1 , wherein the support comprises a SiO 2 -Al 2 O 3 mixed oxide.
11. The catalytic article of claim 10 , wherein SiO 2 is present in an amount of 1 wt % to about 70 wt % of the mixed oxide.
12. The catalytic article of claim 1 , wherein the support comprises a molecular sieve.
13. The catalytic article of claim 12 , wherein the molecular sieve comprises an external surface area of at least 50 m 2 /g.
14. The catalytic article of claim 12 , wherein the molecular sieve is selected from the group of Framework Types consisting of CHA, LEV, AEI, AFX, ERI, SFW, KFI, DDR, ITE, BEA, MFI and FER.
15. The catalytic article of claim 1 , wherein the platinum is present in an amount of 0.01-0.3 wt. % relative to the weight of the support of platinum+the weight of platinum+the weight of the first SCR catalyst in the blend.
16. The catalytic article of claim 1 , wherein a weight ratio of the first SCR catalyst to platinum on the support is in the range of 0:1 to 300:1 based on the weight of these components.
17. The catalytic article of claim 1 , where the blend further comprises at least one of palladium (Pd), gold (Au) silver (Ag), ruthenium (Ru) or rhodium (Rh).
18. The catalytic article of claim 1 , where the second SCR catalyst comprises a small pore molecular sieve selected from the group of Framework Types consisting of CHA, LEV, AEI, AFX, ERI, SFW, KFI, DDR, and ITE.
19. The catalytic article of claim 1 , wherein the second SCR catalyst comprises promoted-Ce—Zr or promoted-MnO 2 .
20. An exhaust system comprising the catalytic article of claim 1 and a means for introducing a reductant upstream of the catalytic article.