首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Effect of water vapor on the deactivation of Pd-zeolite catalysts for selective catalytic reduction of nitrogen monoxide by methane
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Effect of water vapor on the deactivation of Pd-zeolite catalysts for selective catalytic reduction of nitrogen monoxide by methane

机译:水蒸气对Pd沸石催化剂对甲烷选择性催化还原一氧化氮的失活的影响

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摘要

For the selective reduction of nitrogen oxides (NO_x) by methane, Pd-MOR (Pd: 0.47 wt.%) showed stable activity in the absence of water vapor at 450 deg C for more than 30 h, while it showed a gradual decrease in NO_x conversion in the presence of water vapor. Pd-ZSM-5 (Pd: 0.58 wt.%) showed a gradual decrease in NO_x conversion even in the absence of water vapor and almost lost activity in 20 h in the presence of water vapor. CO adsorption measurement revealed that Pd-ZSM-5 tested in the presence of water suffered the severest decrease in Pd dispersion. Raman measurement clearly indicated that PdO is formed on the deactivated samples. These results suggested that deactivation of Pd-zeolite is caused by Pd agglomeration to form PdO and water vapor promotes the agglomeration.
机译:为了通过甲烷选择性还原氮氧化物(NO_x),Pd-MOR(Pd:0.47 wt。%)在无水蒸气的情况下在450摄氏度下显示30个小时以上时表现出稳定的活性,而Pd-MOR则逐渐下降。在水蒸气存在下的NO_x转化。 Pd-ZSM-5(Pd:0.58 wt。%)即使在没有水蒸气的情况下也显示NO_x转化率逐渐降低,并且在有水蒸气的情况下20小时几乎失去活性。 CO吸附测量表明,在水存在下测试的Pd-ZSM-5的Pd分散度下降最严重。拉曼测量清楚地表明,在失活的样品上形成了PdO。这些结果表明,Pd沸石的失活是由于Pd的团聚形成PdO而水蒸气促进了团聚。

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