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A review on the catalytic combustion of soot in Diesel particulate filters for automotive applications: From powder catalysts to structured reactors

机译:汽车用柴油机微粒过滤器中烟尘的催化燃烧综述:从粉末催化剂到结构化反应器

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摘要

The current soot oxidation catalyst scenario has been reviewed, the main factors that affect the activity of powder catalysts have been highlighted and kinetic soot oxidation models have been examined. A critical review of recent advances in modelling approaches has also been presented in this work. The multiscale nature of DPFs lends itself to a hierarchical organization of models, over various orders of magnitude. Different observation scales (e.g., wall, channel, entire filter) have often been addressed with separate modelling approaches that are rarely connected to one another, mainly because of computational difficulties. Nevertheless, DPFs exhibit an intrinsic multi-scale complexity that is reflected by a trade-off between fine and large-scale phenomena. Consequently, the catalytic behavior of DPFs usually results in a non-linear combination of multi-scale phenomena
机译:审查了当前的烟灰氧化催化剂方案,突出了影响粉末催化剂活性的主要因素,并研究了动态烟灰氧化模型。在这项工作中还提出了对建模方法最新进展的严格审查。 DPF的多尺度性质使其适用于各种数量级的模型层次结构。主要由于计算上的困难,常常用单独的建模方法来解决不同的观察标度(例如,墙,通道,整个过滤器),这种方法很少相互联系。然而,DPF表现出固有的多尺度复杂性,这反映在精细现象和大规模现象之间的权衡。因此,DPF的催化行为通常会导致多尺度现象的非线性组合

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