Catalyst and method of use thereof in conversion of NO
A catalyst for the conversion of NO X and N 2 O comprising iron chabazite and iron beta zeolite. A method of simultaneously reducing the NO X and N 2 O concentration in a process gas stream comprising contacting the process gas stream with a catalyst comprising iron chabazite and iron beta zeolite under conversion conditions.
1. A catalyst for the conversion of NO x and N 2 O comprising iron chabazite and iron beta zeolite.
2. The catalyst of claim 1 , comprising alumina.
3. The catalyst of claim 2 , wherein the iron chabazite is made without an organic structure directing agent.
4. The catalyst of claim 3 , wherein the iron chabazite has a pore opening of from 3 to 5 Angstroms.
5. The catalyst of claim 4 , wherein the iron chabazite has a silica-to-alumina ratio of from 3 to 10.
6. The catalyst of claim 5 , wherein the iron chabazite has an average crystal size of from 0.3 to less than 10 microns.
7. The catalyst of claim 6 , wherein the iron chabazite has an average crystal size of from 0.3 to 5.0 microns.
8. The catalyst of claim 7 , wherein the iron chabazite comprises from 0.5 to 5.0 wt % of iron.
9. The catalyst of claim 8 , wherein the iron beta zeolite is made without an organic structure directing agent.
10. The catalyst of claim 9 , wherein the iron beta zeolite has a silica-to-alumina ratio of from 5 to 20.
11. The catalyst of claim 10 , wherein the iron beta zeolite has a silica-to-alumina ratio of from 5 to 11.
12. The catalyst of claim 11 , wherein the iron beta zeolite comprises at least 0.5 wt % of iron.
13. The catalyst of claim 12 , wherein the iron beta zeolite comprises from 1 to 10 wt % iron.
14. The catalyst of claim 13 , wherein the iron beta zeolite has an average crystal size of greater than 0.1 microns.
15. The catalyst of claim 14 , wherein the iron beta zeolite has an average crystal size of from 0.2 to 5 microns.
16. The catalyst of claim 15 , wherein the iron was added to the beta zeolite and the chabazite zeolite by ion exchange.
17. The catalyst of claim 16 , wherein the iron used in the ion exchange method was an iron salt selected from the group consisting of ferric nitrate, ferric chloride, ferrous chloride, ferrous sulfate and mixtures thereof.
18. A method of simultaneously reducing a NO x and N 2 O concentration in a process gas stream comprising contacting the process gas stream with a catalyst comprising iron chabazite and iron beta zeolite under conversion conditions.
19. The method of claim 18 , comprising adding ammonia, urea or an ammonia generating compound to the process gas before or at the same time as the process gas is contacted with the catalyst.
20. The method of claim 19 , wherein the ammonia generating compound is selected from the group consisting of ammonium carbamate, ammonium formate, ammonium carbonate and metal-amine complexes.
21. The method of claim 19 , wherein the ammonia to NO x ratio is 1:1.
22. The method of claim 20 , wherein the contacting is carried out in the presence of at least 0.5 vol. % water.
23. The method of claim 21 , wherein the contacting is carried out in the presence of at least 2 vol. % water.
24. The method of claim 23 , wherein the conversion conditions comprise a temperature in the range of from 250 to 650° C.