Single or dual layer ammonia slip catalyst
US-2016367938-A1 · Dec 22, 2016 · US
US9815048B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9815048-B2 |
| Application number | US-201715482966-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 10, 2017 |
| Priority date | Nov 30, 2009 |
| Publication date | Nov 14, 2017 |
| Grant date | Nov 14, 2017 |
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A heterogeneous catalyst article having at least one combination of a first molecular sieve having a medium pore, large pore, or meso-pore crystal structure and optionally containing a first metal, and a second molecular sieve having a small pore crystal structure and optionally containing a second metal, and a monolith substrate onto or within which said catalytic component is incorporated, wherein the combination of the first and second molecular sieves is a blend, a plurality of layers, and/or a plurality of zones.
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The invention claimed is: 1. A catalyst composition for treating exhaust gas comprising: (a) a first molecular sieve having BEA framework, wherein said first molecular sieve is a ferrosilicate; and (b) a second molecular sieve having a small pore crystal structure and containing about 0.5 to about 5 weight percent of exchanged or free metal selected from Cr, Mn, Fe, Co, Ce, Ni, Cu, Zn, Ga, Mo, Ru, Rh, Pd, Pt, Ag, In, Sn, Re, and Ir, wherein the second molecular sieve is a zeolite aluminosilicate having a silica-to-alumina ratio of about 8 to about 150, wherein said first molecular sieve and said second molecular sieve are present in a weight ratio of about 0.1 to about 1.0. 2. The catalyst composition of claim 1 , wherein said exchanged or free metal in the second molecular sieve is copper. 3. The catalyst composition of claim 2 , wherein said second molecular sieve has a framework selected from CHA, AEI, AFX, and LEV. 4. The catalyst composition of claim 1 , wherein said second molecular sieve contains about 2.0 to about 4.0 weight percent copper, and said first molecular sieve and said second molecular sieve are present in a weight ratio of about 0.2 to about 0.60. 5. The catalyst of claim 4 , wherein the second molecular sieve has a CHA framework. 6. The catalyst of claim 4 , wherein the second molecular sieve has an AEI framework. 7. The catalyst of claim 4 , wherein the second molecular sieve has an AFX framework. 8. The catalyst of claim 4 , wherein the second molecular sieve has a LEV framework. 9. A catalyst article comprising: (a) a catalyst composition according to claim 1 ; and (b) a monolith substrate onto or within which said catalytic composition is incorporated, wherein said first and second molecular sieves are present as a blend, a plurality of layers, or a plurality of zones. 10. The catalyst article of claim 9 , wherein said first molecular sieve is disposed in a first zone and said second molecular sieve is disposed in a second zone, and wherein at least a portion of said first zone is upstream of said second zone relative to an intended direction of gas flow past or through said catalytic composition, a majority of said first zone does not overlap said second zone, and a majority of said second zone does not overlap said first zone. 11. The catalyst article of claim 9 , wherein said first molecular sieve is disposed in a first zone and said second molecular sieve is disposed in a second zone, and wherein said second zone is disposed below said first zone relative to an intended direction of gas flow past or through said catalytic composition. 12. The catalyst article of claim 9 , wherein said first and second molecular sieves are disposed on said substrate as a blend.
containing iron group metals, noble metals or copper · CPC title
with catalytic reactors · CPC title
Mixtures of molecular sieves comprising at least one molecular sieve which is not an aluminosilicate zeolite, e.g. from groups B01J29/03 - B01J29/049 or B01J29/82 - B01J29/89 · CPC title
Mixtures of different aluminosilicates · CPC title
CHA-type, e.g. Chabazite, LZ-218 · CPC title
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