首页> 外文会议>8th International Symposium on Catalyst Deactivation 1999 Brugge, Belgium, October 10-13, 1999 >Deactivation Avalanches through the Interaction of Locally Deactivated Catalyst with Traveling Hot Spots
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Deactivation Avalanches through the Interaction of Locally Deactivated Catalyst with Traveling Hot Spots

机译:通过局部失活的催化剂与移动热点的相互作用来失活崩解

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Packed-bed reactors with exothermic reactions tend to amplify transient perturbations of input parameters such as feed temperatue, composition, flow rate, etc. These can grow into large-amlitude temperature (and concentration)_ wave-traveling hot spots (THS)- with peak temperatures well above the adiabatic temperautre rise. Thus, THS accelerate thermal degradation of the catalyst. If the deactivation is localized (i.e. inactive pellest are surrounded by active catlyst) the THS develop much higher temperatures than they would in a uniformly active bed. The dynamics responsible for this secondary temperature overshoot and further accelerated deactivation is related to "wrong-way behavior". This sequence constitutes a new dynamical mechanism of catalyst deactivation in which a low-activity domain acts as nucleating cener for self-accelerated, avalanchelike, catalyst deactivation.
机译:发生放热反应的填充床反应器往往会放大输入参数(例如进料温度,组成,流速等)的瞬态扰动。这些参数可能会增长到大温度(和浓度)_行进热点(THS)-峰值温度远高于绝热温度升高。因此,THS加速了催化剂的热降解。如果失活是局部的(即非活性化合物被活性催化剂包围),则THS的温度要比均匀活性床高得多。导致该次级温度超调并进一步加速失活的动力学特性与“错误行为”有关。该序列构成了催化剂失活的新动力学机制,其中低活性域充当自加速的雪崩状催化剂失活的成核剂。

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