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首页> 外文期刊>SAE International Journal of Commercial Vehicles >Aging Effects of Catalytic Converters in Diesel Exhaust Gas Systems and Their Influence on Real Driving NO_x Emissions for Urban Buses
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Aging Effects of Catalytic Converters in Diesel Exhaust Gas Systems and Their Influence on Real Driving NO_x Emissions for Urban Buses

机译:催化转化器在柴油气系统中催化转化器的衰老效应及其对城市公交车真实驾驶No_X排放的影响

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摘要

The selective catalytic reduction (SCR) of nitrogen oxides seems to be the most promising technique to meet prospective emission regulations of diesel-driven commercial vehicles. In the case of developing cost-effective catalytic converters with comparably high activity, selectivity, and resistance against aging, ion-exchanged zeolites play a major role. This study presents, firstly, a brief literature review and subsequently a discussion of an extensive conversion analysis of exemplary Cu/ and Fe/ zeolites, as well as a homogeneous admixture of both. The aging stages of SCR catalysts deserve particular attention in this study. In addition, the aging condition of the diesel oxidation catalyst (DOC) was analyzed, which influences the nitrogen dioxide (NO_2) formation, because the NO_2/nitrogen oxides (NO_x) ratio upstream from the SCR converter could be identified as a key factor for low temperature NO_x conversion. Furthermore, it could be proved that a surplus of NO_2 has the potential to suppress the overall efficiency in NO_x conversion. In the final step of this investigation, the data gained during the conversion analysis were used as input parameters for a numerical model. This previously published simulation model was applied to predictively determine NO_x emissions for one representative public bus route, for all investigated configurations of SCR catalysts and DOCs in different aging stages. It could be shown that an exhaust gas system in a moderate aging stage has the potential to deliver lower NO_x emissions than its fresh equivalent. The reason for this could be a more favorable NO_2/NO_x ratio caused by an aged DOC compared to a fresh oxidation catalyst, which overcompensates for the losses in activity of aged SCR converters, particularly at low temperatures.
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