首页> 外文期刊>Journal of Catalysis >AUTONOMOUS KINETIC OSCILLATIONS DURING NO+C2H4+O-2 REACTION OVER PT-ZSM-5 UNDER HIGHLY OXIDIZING CONDITIONS
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AUTONOMOUS KINETIC OSCILLATIONS DURING NO+C2H4+O-2 REACTION OVER PT-ZSM-5 UNDER HIGHLY OXIDIZING CONDITIONS

机译:在高氧化条件下PT-ZSM-5上NO + C2H4 + O-2反应期间的自激振动

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This work has investigated, using a packed-bed laboratory reactor, the steady-state behavior of a Pt-ZSM-5 catalyst for the NO + C2H4 + O-2 reaction under highly oxidizing conditions, typical of lean-burn gasoline engine exhaust. Results have revealed very unusual kinetic behavior near the reaction lightoff temperature. For the first time, we have observed sustained kinetic oscillations, induced by the presence of NO, in the steady-state rate of the NO + C2H4 + O-2 reaction. The pattern of the oscillation was found to be very sensitive to catalyst temperature and feed composition. The steady-state rate of the NO + C2H4 + O-2 reaction is inhibited by NO and exhibits a strong kinetic isotope effect; the inhibition effect of 15NO is much greater than that of 14NO. Possible mechanisms of the observed kinetic oscillations are discussed on the basis of both the kinetic inhibition effect of NO on the catalytic surface and the surface phase transition of Pt induced by adsorbed NO. (C) 1995 Academic Press, Inc. [References: 64]
机译:这项工作已使用填充床实验室反应器研究了Pt-ZSM-5催化剂在高氧化条件下(典型的稀燃汽油发动机废气)在NO + C2H4 + O-2反应中的稳态行为。结果显示在反应起燃温度附近非常不寻常的动力学行为。第一次,我们观察到在NO + C2H4 + O-2反应的稳态速率下,由NO的存在引起的持续动力学振荡。发现振荡的模式对催化剂温度和进料组成非常敏感。 NO抑制NO + C2H4 + O-2反应的稳态速率,并表现出很强的动力学同位素效应。 15NO的抑制作用远大于14NO。基于NO对催化表面的动力学抑制作用和吸附NO引起的Pt表面相变,讨论了观察到的动力学振荡的可能机理。 (C)1995 Academic Press,Inc. [参考:64]

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