催化作用
ZSM-5型
分解
化学气相沉积
硫酸盐
无机化学
降水
化学
沉积(地质)
氮气
硫酸铵
沸石
氨
选择性催化还原
核化学
材料科学
有机化学
气象学
古生物学
物理
生物
沉积物
作者
Chunlei Zou,Xu Wu,Hao Meng,Yali Du,Zhe Li
标识
DOI:10.1002/slct.201801518
摘要
Abstract Mn‐Fe/ZSM‐5 was prepared via co‐precipitation (CP) and precipitation–chemical vapor deposition (P‐CVD) methods. Catalytic performance investigation showed that Mn‐Fe/ZSM‐5 by P‐CVD method had higher catalytic activity and SO 2 resistance than the ones by CP method for NH 3 ‐SCR at low temperature. Characterization results proved that the amount of ammonium sulfate deposited on the surface of Mn‐Fe/ZSM‐5(P‐CVD) was less than that of Mn‐Fe/ZSM‐5(CP) catalyst. Further investigations revealed that the deposition and decomposition of ammonium sulfate proceeded in a dynamic balance on Mn‐Fe/ZSM‐5(P‐CVD) catalyst, which was crucial for the excellent catalytic performances in the presence of SO 2 and H 2 O.
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