首页> 外文会议>ASME Internal Combustion Engine Division technical conference >EFFECT OF HYDROCARBON EMISSIONS FROM PCCI-TYPE COMBUSTION ON THE PERFORMANCE OF SELECTIVE CATALYTIC REDUCTION CATALYSTS
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EFFECT OF HYDROCARBON EMISSIONS FROM PCCI-TYPE COMBUSTION ON THE PERFORMANCE OF SELECTIVE CATALYTIC REDUCTION CATALYSTS

机译:碳氢化合物排放对PCCI型燃烧对选择性催化还原催化剂性能的影响

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Core samples cut from full size commercial Fe-and Cu-zeolite SCR catalysts were exposed to a slipstream of raw engine exhaust from a 1.9-liter 4-cylinder diesel engine operating in conventional and PCCI combustion modes. Subsequently, the NOx reduction performance of the exposed catalysts was evaluated on a laboratory bench- reactor fed with simulated exhaust. The Fe-zeolite NOx conversion efficiency was significantly degraded, especially at low temperatures (<250°C), after the catalyst was exposed to the engine exhaust. The degradation of the Fe-zeolite performance was similar for both combustion modes. The Cu-zeolite was much more resistant to HC fouling than the Fe-zeolite catalyst. In the case of the Cu-zeolite, PCCI exhaust had a more significant impact than the exhaust from conventional combustion on the NOx conversion efficiency. For all cases, the clean catalyst performance was recovered after heating to 600°C. GC-MS analysis of the HCs adsorbed to the catalyst surface provided insights into the observed NOx reduction performance trends.
机译:从全尺寸的商业Fe-Zeolite SCR催化剂切割的核样品暴露于从常规和PCCI燃烧模式操作的1.9升4缸柴油发动机的原始发动机排气的滑翔流。随后,在用模拟排气进给的实验室工作台反应器上评价暴露催化剂的NOx降低性能。在催化剂暴露于发动机排气后,Fe-沸石NOx转化效率显着降低,特别是在低温(<250℃)下。双沸石性能的降解对于两个燃烧模式相似。 Cu-沸石比Fe-沸石催化剂更抗HC污染。在Cu-沸石的情况下,PCCI排气的冲击比来自常规燃烧对NOx转化效率的燃烧具有更显着的冲击。对于所有情况,在加热至600℃后回收清洁催化剂性能。对吸附到催化剂表面的HCS的GC-MS分析为观察到的NOx降低性能趋势提供了见解。

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