催化作用
选择性
色散(光学)
钝化
铜
沸石
无机化学
相(物质)
化学工程
化学
氧化物
氧化铜
材料科学
图层(电子)
有机化学
物理
光学
工程类
作者
Bo Peng,Kenneth G. Rappé,Yanran Cui,Feng Gao,János Szanyi,Matthew J. Olszta,Éric Walter,Yong Wang,Jamie D. Holladay,Randal A. Goffe
标识
DOI:10.1016/j.apcatb.2019.118359
摘要
ZrO2 is introduced as a secondary phase to Cu-SSZ-13 via different approaches and tested for the NH3-SCR reaction. It is shown that the vicinity between the two catalyst phases, i.e., ZrO2 dispersion, influences interaction between copper oxide (CuOx) on Cu-SSZ-13 and ZrO2. A strong interaction is achieved when ZrO2 is formed with high dispersion on Cu-SSZ-13, and leads to the chemical interaction of CuOx and ZrO2 in hydrothermally aged catalysts. The result is formation of a Cu-stabilized t-ZrO2 phase which greatly hinders the non-selective NH3 oxidation due to CuOx. With reduced ZrO2 dispersion and less Cu-SSZ-13 and ZrO2 interaction, the beneficial role of ZrO2 is diminished. This strategy of CuOx passivation is able to significantly enhance the high-temperature selectivity of the state-of-the-art NH3-SCR catalytic system while mitigating the adverse impact of CuOx clusters on the zeolite, potentially enabling higher Cu-content SCR catalysts and improved low-temperature activity.
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