Zeolite blend catalysts for treating exhaust gas
View Patent ↗Provided is an improved catalyst for treating exhaust gas, particularly for selectively reducing NO x , and methods for using the same, wherein the catalyst includes a blend of a transition metal promoted zeolite and an un-promoted zeolite, wherein both zeolites have the same framework type.
1. A catalyst for treating an exhaust gas comprising a blend of a transition metal-promoted first zeolite and a second zeolite primarily in at least one of H + form, NH 4 + form, alkali metal form, or alkaline-earth metal form, wherein the first and second zeolites have the same framework structure and the framework structure is selected from CHA, AEI, AFX, LEV, and SFW, wherein the second zeolite is essentially free of transition metals.
2. The catalyst of claim 1 , wherein the first zeolite is exchanged with copper.
3. The catalyst of claim 1 , wherein the second zeolite contains calcium.
4. The catalyst of claim 1 , wherein the second zeolite is essentially free of non-framework metals.
5. The catalyst of claim 1 , wherein the first zeolite and the second zeolite have different silica-to-alumina ratios.
6. The catalyst of claim 1 , wherein the first zeolite has lower silica-to-alumina ratio relative to the second zeolite.
7. The catalyst of claim 1 , wherein the first zeolite and the second zeolite independently have an silica-to-alumina ratio of about 10 to about 35.
8. The catalyst of claim 1 , wherein the first and second zeolites have the same silica-to-alumina ratio.
9. The catalyst of claim 1 , wherein the second and first zeolites are present in a relative ratio of about 0.1 to about 1.
10. The catalyst of claim 1 , wherein the first and second zeolites have a CHA framework.
11. The catalyst of claim 1 , wherein the first and second zeolites have an AEI framework.
12. A catalytic article for treating an exhaust gas comprising a porous honeycomb substrate containing a catalyst according to claim 1 .
13. A method for treating an exhaust gas comprising contacting an exhaust gas stream containing NO x with a reductant in the presence of a catalyst according to claim 1 ; wherein the contacting selectively reduces at least a portion of the NO x to N 2 and water.
14. The method of claim 13 , wherein said contacting occurs at a temperature of about 150-600° C.