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Application of secondary air injection for simultaneously reducing converter-in emissions and improving catalyst light-off performance

机译:二次出空气喷射在同时减少转化机排放和改善催化剂脱离性能的应用

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Improving catalyst light-off characteristics during cold start and reducing engine-out (more accurately converter-in) emissions prior to catalyst light-off have been regarded as the keys to meeting future stringent emissions regulations. Many technologies and control strategies have been proposed, and some of them have already been incorporated into production, to address these issues. Among these, secondary air injection received a lot of attention. This study was initiated to investigate the thermal and chemical processes associated with secondary air injection inside the exhaust system in order to maximize the simultaneous benefit of improving catalyst light-off performance and reducing converter-in emissions. The effects of several design and operating parameters such as secondary air injection location, exhaust manifold design, spark timing, engine enrichment level, and secondary air flow rate were carefully examined. It was found that proper design and optimization of secondary air injection can significantly improve catalyst light-off characteristics and reduce converter-in HC emissions.
机译:在冷启动期间改善催化剂脱离特性,减少催化剂熄灭前的发动机 - 出(更准确的转换器)排放被认为是满足未来严格排放法规的钥匙。已经提出了许多技术和控制策略,其中一些技术已经被纳入生产,以解决这些问题。其中,二级空气喷射受到很多关注。启动该研究以研究与排气系统内的二次空气喷射相关的热和化学过程,以最大限度地提高改善催化剂脱离性能和减少转化器排放的同时效益。仔细检查了几种设计和操作参数,例如二级空气喷射位置,排气歧管设计,火花正时,发动机富集水平和二次空气流量的影响。结果发现,二次空气喷射的适当设计和优化可以显着提高催化剂脱离特性并减少转化机的HC排放。

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