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Inhibiting the Formation of Toxic HCN Induced by C3H6 Coexistence and Enhancing C3H6 Resistance of Cu-Zeolite in the NH3-SCR Reaction

delete2024-09-18
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PRE
AI
Y
Yu Sun
T
Tongliang Zhang
W
Wenqing Ding
刘晶晶 cover
刘晶晶 (Jingjing Liu)
刘迪茹 (Diru Liu)
J
Jinpeng Du
Z
Zhi Liu
X
Xiaoyan Shi
余运波 (Yunbo Yu)
陈培榕 cover
陈培榕 (Peirong Chen)
张妍 cover
张妍 (Yan Zhang)
W
Wenpo Shan
Y
Yulong Shan *
何洪 cover
何洪 (Hong He)
DOI:10.1021/acs.est.4c05571delete
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Abstract

Abstract

En 中文
The presence of light hydrocarbons (HCs) in diesel exhaust, specifically C3H6, significantly affects the performance of the state-of-the-art Cu-SSZ-13 zeolite NH3-SCR catalysts. It also leads to the formation of highly toxic HCN, posing risks to the environment and human health. In this work, the highly toxic HCN formation is inhibited, and the C3H6 resistance of Cu-SSZ-13 is improved by secondary metal modification via doping with rare earth/transition metal elements. Upon introduction of C3H6, the activity of Cu-SSZ-13 significantly decreases at medium-high temperatures. This is primarily due to the competitive reaction between C3H6 and NH3, which compete for the NH3 reductant required in the NH3-SCR reaction, resulting in the production of HCN. The unfavorable effect is alleviated on the modified catalysts due to their enhanced oxidation capabilities toward C3H6 and the HCHO intermediate, facilitating the complete oxidation of C3H6 to COx. This inhibits the undesirable partial oxidation reaction between C3H6 and NH3, thereby improving the activity of Cu-SSZ-13 at medium to high temperatures and significantly reducing the formation of highly toxic HCN.
Keywords:
HCN
C3H6 resistance
NH3-SCR
Cu-SSZ-13
secondarymetal modification

Journal

E
Environmental Science and Technology
IF:
11.3
Papers:
4.3W
Citations:
26.0W

Organization

G
ganjiang innovation academy, cas
Scholars:
349
Papers: 261
Citations: 0
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704