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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Mathematical modelling of precious metals catalytic converters for diesel NO{sub}x reduction
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Mathematical modelling of precious metals catalytic converters for diesel NO{sub}x reduction

机译:用于柴油还原NO {sub} x的贵金属催化转化器的数学模型

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摘要

Precious metal catalysts for NO{sub}x reduction in lean diesel engine exhaust conditions are characterized by a narrow temperature range of efficient operation and require high availability of reducing species in significant concentration.Consequently, there exists a large optimization potential in the design and control of lean-NO{sub}x catalytic conversion systems. A mathematical model of the transport and chemical phenomena in platinum-based lean-NO{sub}x catalysts was formulated, based on the experience with analogous models for gasoline three-way catalysts. A simplified four-reaction scheme is employed, considering the oxidation of CO, H{sub}2 and hydrocarbons (HCs), as well as the reaction between NO{sub}x and HCs. Results arecompared with previously published laboratory and engine data in order to assess the capacity of this approach in representing real-world behaviour of Pt-based lean-NO{sub}x catalysts. Initial results illustrate the power and flexibility of the model,which is able to predict the NO{sub}x conversion characteristics in model gas tests as well as in full-scale engine tests with reasonable accuracy
机译:在稀柴油发动机排气条件下用于还原NO {sub} x的贵金属催化剂的特点是有效操作的温度范围狭窄,并且需要高浓度还原物种的高可用性。因此,在设计和控制方面存在巨大的优化潜力稀NO x催化转化系统基于汽油三效催化剂类似模型的经验,建立了铂基稀薄NO {sub} x催化剂中迁移和化学现象的数学模型。考虑到CO,H {sub} 2和碳氢化合物(HCs)的氧化以及NO {sub} x和HCs之间的反应,采用了简化的四反应方案。将结果与以前发布的实验室和发动机数据进行比较,以评估该方法在表征基于Pt的稀NO-NO {sub} x催化剂的实际行为方面的能力。初始结果说明了该模型的强大功能和灵活性,能够以合理的精度预测模型气体测试以及全尺寸发动机测试中的NO {sub} x转换特性

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