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The Effect of Pt:Pd Ratio on Light-Duty Diesel Oxidation Catalyst Performance: An Experimental and Modelling Study

机译:Pt:Pd比对轻型柴油氧化催化剂性能的影响:实验和模型研究

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This paper presents a two-part study on the effect of Pt:Pd ratio (at a constant total Pt+Pd loading of 120 g ft~(-3)) on the catalytic performance of a Diesel Oxidation Catalyst (DOC) intended for light-duty applications, covering ratios across the full range from 100% Pd to 100% Pt. (Work on a heavy-duty DOC is presented in SAE 2015-01-1052). The first part of this paper presents a reactor study on the effect of Pt:Pd ratio on the catalytic activity of key reactions occurring individually over the DOC, including the oxidation of CO, C_3H_6, n-C_(10)H_(22), CH_4 and NO. For some reactions, activity increases continuously with Pt content (oxidation of n-C_(10)H_(22) and NO); in contrast the activity for CH_4 oxidation increases with decreasing Pt content (increasing Pd content), while CO and C_3H_6 oxidation exhibit more complicated dependencies. The second part presents the development of a one-dimensional model capable of predicting the effect of Pt:Pd ratio on DOC performance. The model was based on a previous DOC model with selected parameters being varied to account for the change in Pt:Pd ratio. The variation in each kinetic parameter with ratio was described by a function to facilitate interpolation to any Pt:Pd ratio. For pragmatic reasons (the complexity of Pt-Pd catalysts), the model was developed directly from NEDC test data with kinetic parameters being optimised to achieve best fit to measured data for each ratio. The model gave a good prediction of post-catalyst CO, THC and NO_2 emissions over the NEDC across the full range of Pt:Pd ratios.
机译:本文分两部分研究了Pt:Pd之比(在恒定的总Pt + Pd负载量为120 g ft〜(-3)时)对轻质柴油氧化催化剂(DOC)的催化性能的影响。应用,涵盖从100%Pd到100%Pt的整个范围的比率。 (有关重型DOC的工作,请参见SAE 2015-01-1052)。本文的第一部分提供了一个反应器研究,研究了Pt:Pd比率对在DOC上单独发生的关键反应的催化活性的影响,包括CO,C_3H_6,n-C_(10)H_(22)的氧化, CH_4和NO。对于某些反应,活性随Pt含量(n-C_(10)H_(22)和NO的氧化)连续增加;相反,CH_4氧化的活性随Pt含量的减少(Pd含量的增加)而增加,而CO和C_3H_6的氧化则表现出更为复杂的依赖性。第二部分介绍了一维模型的开发,该模型能够预测Pt:Pd比对DOC性能的影响。该模型基于先前的DOC模型,所选参数会发生变化以说明Pt:Pd比率的变化。每个动力学参数随比率的变化都通过一个函数来描述,该函数有助于插值到任何Pt:Pd比率。出于实用的原因(Pt-Pd催化剂的复杂性),直接从NEDC测试数据中开发了模型,并对其动力学参数进行了优化,以使每个比率均能最佳地拟合测量数据。该模型对整个Pt:Pd比率范围内NEDC上的催化剂后CO,THC和NO_2排放给出了很好的预测。

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