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Selective catalytic reduction of NOx with NH3 over Ce-Mn oxide and Cu-SSZ-13 composite catalysts-Low temperature enhancement
被引:67
作者:
Andana, Tahrizi
[1
]
Rappe, Kenneth G.
[1
]
Nelson, Nicholas C.
[1
]
Gao, Feng
[2
]
Wang, Yong
[1
,3
]
机构:
[1] Pacific Northwest Natl Lab, Energy & Environm Directorate, Richland, WA 99354 USA
[2] Pacific Northwest Natl Lab, Phys & Computat Sci Directorate, Richland, WA 99354 USA
[3] Washington State Univ, Gene & Linda Voiland Sch Chem Engn & Bioengn, Pullman, WA USA
来源:
APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY
|
2022年
/
316卷
关键词:
Composite catalyst;
Ceria;
Manganese oxide;
Zeolite;
Cu-SSZ-13;
Low temperature selective catalytic reduction;
SOLUTION COMBUSTION SYNTHESIS;
AMMONIA OXIDATION;
CO OXIDATION;
SCR CATALYST;
FAST NH3-SCR;
MECHANISM;
CHEMISTRY;
PERFORMANCE;
ZEOLITES;
STANDARD;
D O I:
10.1016/j.apcatb.2022.121522
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
A composite catalyst comprised of ceria-manganese oxide and Cu-SSZ-13 components represents a potential solution for improving selective catalytic reduction (SCR) of NOx by ammonia. Here, clarity is provided to the pathway of promotion on these catalysts at low temperatures (< 200 degrees C), and it is shown that improved performance comes solely from interaction of the oxide phase with Bronsted acid bound NH3. We demonstrate that at low temperatures, the catalytic components interact via oxide-derived nitrites/nitrite-precursors (e.g., HONO, N2O3) reacting with Bronsted acid bound NH3 from the zeolite. Then, only at elevated temperatures is the influence of the oxide phase on Cu redox in the Cu-SSZ-13 observed. Furthermore, we show how the oxide component has the great potential to circumvent NH4NO3 inhibition on Cu-SSZ-13 in the composite catalysts at low temperatures by bypassing the formation of nitrates from NO2 disproportionation, thus providing a practical solution to improving low temperature SCR reactivity.
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页数:13
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