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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Sulfur poisoning and regeneration of Rh-ZSM-5 catalysts for total oxidation of methane
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Sulfur poisoning and regeneration of Rh-ZSM-5 catalysts for total oxidation of methane

机译:RH-ZSM-5催化剂的硫中毒和再生,用于甲烷的总氧化

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The activity of Rh/ZSM-5 catalysts for methane oxidation was investigated under conditions simulating the exhaust from lean burning, natural gas fueled engines to evaluate the influence of reaction atmosphere on catalytic activity. The Rh-catalysts yield high methane conversion at conditions achievable in real exhaust systems, despite the inhibiting effects of H2O and SO2. The influence of temperature and SO2 concentration (1 - 20 ppm) on the activity were studied. The deactivation caused by SO2 was intensified with decreasing temperature and increasing SO2 concentration, and the SO2-poisoning could be modeled as the occupation of active sites following a Temkin adsorption isotherm. At 400 degrees C essentially full coverage of S-species was reached with 1 - 2 ppm of SO2, but at 500 degrees C the coverage had decreased significantly, and considerable catalytic activity was preserved in the presence of SO2. Significant activity was regenerated in SO2-free gas, but the nature of the SO2-free regeneration atmosphere was unimportant.
机译:在模拟稀释燃烧的废气的条件下,研究了RH / ZSM-5催化剂的催化剂,以评估反应气氛对催化活性的影响。尽管H 2 O和SO2的抑制作用,RH催化剂在现实排气系统中可实现的条件下产生高甲烷转化。研究了温度和SO2浓度(1-20ppm)对活性的影响。通过降低温度和增加SO2浓度,通过降低SO2引起的去激活,并且SO2中毒可以在Temkin吸附等温线后占用活性位点。在400摄氏度下,基本上覆盖S或SO 2的S或SO 2达到,但在500摄氏度下,覆盖率显着下降,并且在SO 2存在下保留了相当大的催化活性。在无氧气体中再生显着的活性,但是无需无需的SO2的再生气氛的性质不重要。

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