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Spontaneous isothermal oscillations in N2O decomposition over a Cu-ZSM5 catalyst

机译:Cu-ZSM5催化剂上N2O分解中的自发等温振荡

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Spontaneous isothermal oscillations of N2O and O-2 outlet concentrations are observed in N2O decomposition on an over-exchanged Cu-ZSM5 catalyst. The oscillations are not chaotic but have a kinetic genesis. The oscillating behaviour is established over the pre-reduced catalyst after a transient phase whose duration is reduced with increasing the reactant inlet concentration. The addition of O-2 to the feed reduces the average N2O conversion and does not substantially affect the frequency and the amplitude of the oscillations up to an O-2/N2O inlet ratio equal to 10; only at higher inlet ratios do the oscillations disappear. Fourier analysis has revealed that the frequency of the oscillations increases by increasing either the feed flow rate or the N2O reactor inlet concentration. A reaction mechanism based on the periodic change of the copper oxidation state in the zeolite has been proposed. The mechanism allows us to explain most of the results obtained in different experimental conditions. (C) 1998 Academic Press. [References: 31]
机译:在过度交换的Cu-ZSM5催化剂上N2O分解中观察到N2O和O-2出口浓度的自发等温振荡。振荡不是混沌的,而是具有动力学起源的。在过渡阶段之后,在预还原的催化剂上建立起振荡行为,该过渡阶段的持续时间随着反应物入口浓度的增加而缩短。在进料中添加O-2会降低平均N2O转化率,并且直到O-2 / N2O入口比等于10时,基本上不影响振荡的频率和幅度;只有在较高的进气比时,振荡才会消失。傅立叶分析表明,通过增加进料流速或N2O反应器入口浓度,振荡频率会增加。已经提出了基于沸石中铜氧化态的周期性变化的反应机理。该机制使我们能够解释在不同实验条件下获得的大多数结果。 (C)1998年学术出版社。 [参考:31]

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