Investigation of Co–Mn–Ce Ternary Composite Oxide Catalyst for Low-Temperature Selective Catalytic Reduction of NOx with NH3
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11244-024-01925-9.pdf
Reference48 articles.
1. Chen W, Zou R, Wang X (2022) Toward an atomic-level understanding of the catalytic mechanism of selective catalytic reduction of NOx with NH3. ACS Catal 12:14347–14375
2. Shindell D, Faluvegi G, Walsh M, Anenberg SC, Van Dingenen R, Muller NZ, Austin J, Koch D, Milly G (2011) Climate, health, agricultural and economic impacts of tighter vehicle-emission standards. Nat Clim Change 1:59–66
3. Shen Y, Dong W, Zhang L, Wang L, Chen B, Guo Y, Zhan W, Wang A, Ge C, Guo Y (2024) Revealing the mechanism of K-enhanced Cu-SSZ-13 catalysts against hydrothermal aging and P-poisoning for NOx reduction by NH3-SCR. Sep Purif Technol 330:125248
4. Shen Y, Li T, Yang J, Wang A, Wang L, Zhan W, Guo Y, Guo Y (2023) Enhanced low-temperature performance of Al-rich Cu-SSZ-13 by Ce modification upon hydrothermal aging for NH3-SCR. Chem Eng J 473:145275
5. Xu J, Chen G, Guo F, Xie J (2018) Development of wide-temperature vanadium-based catalysts for selective catalytic reducing of NOx with ammonia: review. Chem Eng J 353:507–518
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