Copper CHA zeolite catalysts
Zeolite catalysts and systems and methods for preparing and using zeolite catalysts having the CHA crystal structure are disclosed. The catalysts can be used to remove nitrogen oxides from a gaseous medium across a broad temperature range and exhibit hydrothermal stable at high reaction temperatures. The zeolite catalysts include a zeolite carrier having a silica to alumina ratio from about 15:1 to about 256:1 and a copper to alumina ratio from about 0.25:1 to about 1:1.
1. An ammonia SCR catalyst article comprising a substrate having deposited thereon a copper-containing aluminosilicate zeolite having a CHA crystal structure, wherein the zeolite contains at least about 2.00 weight percent copper, expressed as copper oxide, and has a mole ratio of silica to alumina from about 20 to about 40, wherein the CHA crystal structure is characterized by lattice parameters determined from an X-ray powder diffraction pattern, and wherein the hydrothermal stability of the lattice parameters of the CHA crystal structure is confirmed by a hydrothermal aging test, and wherein the hydrothermal aging test comprises subjecting the catalyst article to hydrothermal aging by aging the catalyst article in the presence of 10% H 2 O at 800° C. for 48 hours, and wherein the lattice parameters of the CHA crystal structure after said hydrothermal aging test are within 1% of the lattice parameters of the CHA crystal structure prior to said hydrothermal aging test.
2. The article according to claim 1 , wherein the d-spacings of the CHA crystal structure after hydrothermal aging are within 1% of the d-spacings of the CHA crystal structure prior to hydrothermal aging within the 15-38.5° 2Θ range.
3. The article according to claim 1 , wherein the CHA crystal structure after hydrothermal aging has a lattice parameter a of about 13.56 Å and a lattice parameter c of about 4.75 Å.
4. The article according to claim 1 , wherein the substrate is a metallic or ceramic substrate.
5. The article according to claim 1 , wherein the zeolite having the CHA structure is selected from the group consisting of SSZ-13, LZ-218, Linde D, Linde R, Phi and ZK-14.
6. The article according to claim 5 , wherein the zeolite having the CHA structure is SSZ-13.
7. The article according to claim 1 , wherein the mole ratio of silica to alumina is from about 25 to about 40.
8. The article according to claim 7 , wherein the mole ratio of silica to alumina is about 30.
9. The article according to claim 1 , wherein the substrate is a honeycomb substrate.
10. The article according to claim 9 , wherein the substrate is a wall flow substrate.
11. The article according to claim 9 , wherein the substrate is a flow through substrate.
12. The article according to claim 1 , wherein the deposited zeolite further comprises a binder.
13. The article according to claim 12 , wherein the binder is ZrO 2 .
14. The article according to claim 1 , wherein the substrate is ceramic and selected from the group consisting of cordierite, cordierite-alumina, silicon nitride, zircon mullite, spodumene, alumina-silica magnesia, zircon silicate, sillimanite, magnesium silicate, zircon, petalite, alpha-alumina, and aluminosilicate.
15. The article according to claim 1 , wherein the zeolite has an atomic ratio of copper to aluminum from about 0.30 to about 0.50.