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Interpreting chemical kinetics from complex reaction-advection-diffusion systems: Modeling of flow reactors and related experiments

机译:从复杂的反应-对流-扩散系统解释化学动力学:流动反应器的建模和相关实验

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摘要

The present discourse is directed toward the community that wishes to generate or use flow reactor data from complex chemical reactions as kinetic model development and validation targets. Various methods for comparing experimental data and computational predictions are in evidence in the literature, along with limited insights into uncertainties associated with each approach. Plug flow is most often assumed in such works as a simple, chemically insightful physical reactor model; however, only brief qualitative justifications for such an interpretation are typically offered. Modern tools permit the researcher to quantitatively confirm the validity of this assumption. In a single complex reaction system, chemical time scales can change dramatically with extent of reaction of the original reactants and with transitions across boundaries separating low temperature, intermediate temperature, and chain branched (high temperature) kinetic regimes. Such transitions can violate the underlying assumptions for plug flow interpretation. Further, uncertainties in reaction initialization may confound interpretation of experiments for which the plug flow assumption may be appropriate. Finally, various methods of acquiring experimental data can also significantly influence experimental interpretations. The following discussions provide important background for those interested in critically approaching the relatively vast literature on the application of flow reactors for generating kinetic validation data. The less frequently discussed influences of reactor simulation assumptions on modeling predictions are addressed through examples for which the kinetic behavior of specific reactant combinations may cause experimental observations to depart locally from plug flow behavior.
机译:本讲义针对希望从复杂的化学反应中生成或使用流动反应器数据作为动力学模型开发和验证目标的社区。文献中有多种比较实验数据和计算预测的方法,以及对每种方法相关不确定性的有限见解。推流通常被认为是一种简单的,具有化学见解的物理反应器模型。但是,通常仅提供对此解释的简短定性依据。现代工具使研究人员能够定量确认该假设的有效性。在单个复杂的反应系统中,化学时间标度会随着原始反应物的反应程度以及跨低温,中温和链支化(高温)动力学机制的边界跃迁而发生巨大变化。此类转换可能违反塞流解释的基本假设。此外,反应初始化的不确定性可能会混淆对塞流假设可能适用的实验解释。最后,各种获取实验数据的方法也可以极大地影响实验解释。以下讨论为那些有兴趣批判地寻求有关流动反应器用于生成动力学验证数据的文献的人员提供了重要的背景。通过示例解决了反应器模拟假设对建模预测的讨论次数较少的影响,在这些示例中,特定反应物组合的动力学行为可能导致实验观察结果局部偏离活塞流行为。

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