首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Detailed Kinetic Modeling Study of NOx Oxidation and Storage and Their Interactions over Pt/Ba/Al2O3 Monolith Catalysts
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Detailed Kinetic Modeling Study of NOx Oxidation and Storage and Their Interactions over Pt/Ba/Al2O3 Monolith Catalysts

机译:在Pt / Ba / Al2O3整体催化剂上NOx氧化和存储及其相互作用的详细动力学模型研究

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摘要

The concept of nitrogen oxide storage-reduction (NSR) is a promising aftertreatment technology for reducing NOx emissions from lean-burn engine exhaust. The present work focuses on the first two steps of the overall NSR mechanism, namely, NO to NO2 oxidation and NOx storage. The governing storage mechanisms are mainly elucidated on the model catalysts such as Pt/Ba/Al2O3. A unique detailed NO oxidation kinetic model over Pt/Al2O3 was conceived based on literature data and validated over a wide range of experimental conditions. This detailed mechanism was then globalized to obtain a Langmuir—Hinshelwood rate expression, which resulted in a reduced CPU cost in reactor computations. The global oxidation model predicts various experimental NO and NO2 profiles well. Further, a detailed kinetic model for NOx storage over Ba/Al2O3 was developed and validated against different experimental data. Finally, the detailed oxidation and storage schemes were successfully coupled and species spillover between the noble metal and the storage material was accounted for. The experimental NO and NO2 profiles obtained from the NOx storage experiments over Pt/Ba/Al2O3 could be reproduced by the detailed coupled model. Reaction pathway analyses and sensitivity studies were performed to provide a more comprehensive insight into the system behavior.
机译:减少氮氧化物存储(NSR)的概念是一种有前途的后处理技术,可减少稀燃发动机排气中的NOx排放。目前的工作集中在整个NSR机制的前两个步骤,即NO到NO2的氧化和NOx的存储。主要在模型催化剂如Pt / Ba / Al2O3上阐明了主要的存储机理。根据文献数据构想了一个独特的详细的关于Pt / Al2O3的NO氧化动力学模型,并在广泛的实验条件下进行了验证。然后,对该详细机制进行了全球化以获得Langmuir-Hinshelwood速率表达式,从而降低了反应堆计算中的CPU成本。整体氧化模型可以很好地预测各种实验性NO和NO2分布。此外,开发了详细的动力学模型,用于在Ba / Al2O3上存储NOx,并针对不同的实验数据进行了验证。最后,成功地结合了详细的氧化和存储方案,并考虑了贵金属与存储材料之间的物种溢出。通过详细的耦合模型可以重现从Pt / Ba / Al2O3上的NOx储存实验获得的实验NO和NO2曲线。进行了反应途径分析和敏感性研究,以提供对系统行为的更全面的了解。

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