催化作用
热液循环
硫黄
化学
氮氧化物
选择性催化还原
还原(数学)
钠
无机化学
材料科学
化学工程
有机化学
燃烧
工程类
几何学
数学
作者
Ying Meng,Shoute Zhang,Qianzhao Ding,Chuanqi Pan,Qin Wu,Wei Chen,Yanbing Guo,Lei Pang,Weiquan Cai,Tao Li
标识
DOI:10.1016/j.apcata.2022.118872
摘要
In the actual diesel vehicle after-treatment systems, Cu-SAPO-34 selective catalytic reduction (SCR) of NO x catalyst simultaneously experiences the failure of sodium (Na) poisoning, low-temperature hydrothermal (LTH) deactivation and SO 2 poisoning. This work investigated that the Na-loaded Cu-SAPO-34 catalysts were severally subjected to LTH treatment and sulfur poisoning for the first time. Our characterizations revealed that Na played entirely different roles in above two scenarios. In the LTH process, Na readily exchanges the protons of Si-OH-Al moieties on the zeolite framework, which inhibits the hydrolysis of the framework and further restrains the formation of SCR-inactive species. However, for SO 2 poisoning, the presence of Na accelerates the deactivation of Cu-SAPO-34 because more stable sulfate species are formed on the catalyst, which severely block the pores and reduce the active sites. It is expected that these results could assist the design of SCR catalysts to meet ultra-low NO x emission. • The co-effects of Na poisoning and moisture on Cu-SAPO-34 were studied. • The influences of Na poisoning and S poisoning on Cu-SAPO-34 were investigated. • Hydrothermal stability of Cu-SAPO-34 enhanced by introducing Na + species. • The activity of Na impregnated Cu-SAPO-34 reduced dramatically after S poisoned.
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