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Strive for Zero Emissions Impact from Hybrids

机译:争取零的零排放影响来自杂种

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Since several decades, passenger cars and light duty vehicles (LDV) with spark-ignited engines reach full pollutant conversion during warm up conditions; the major challenge has been represented by the cold start and warming up strategies. The focus on technology developments of exhaust after treatment systems have been done in the thermal management in order to reach the warm up conditions as soon as possible. A new challenge is now represented by the Real Driving Emission (RDE) Regulation as this bring more various, and not any longer cycle defined, cold start conditions. On the other hand, once the full conversion has been reached, it would be beneficial for many Exhaust After Treatment System (EATS) components, e.g. for overall durability if the exhaust gas temperature could be lowered. To take significant further emission steps, approaching e.g. zero emission concepts, we investigate the use of Electrical Heating Catalyst (EHC) also including pre-heating. The clear goal is to have the right temperature in the right place at the right time. Several approaches have been investigated in this paper regarding EATS architecture and EHC heating strategies to reach a significant cold start emissions reduction. Hybrid Electrical Vehicles (HEV) applications are introduced in a rapid pace also allowing for more possibilities to support the emission strategies. Not only by additional propulsion but also including an EATS design supported by electric power. Volvo Car Corporation and Continental Emitec have, with promising results, investigated alternative EATS designs embedding the EHC. The balance with vehicle properties (e.g. fuel consumption) is here of course important.
机译:自几十年,乘用车和轻型车辆(LDV)与火花点燃发动机在预热条件下达到全面的污染物转换;主要挑战是由冷启动和预热策略代表的。在热管理中已经完成了处理系统之后废气的技术开发,以便尽快到达热身状态。新的挑战现在由真正的驾驶发射(RDE)规则表示,因为这带来了更多各种,而不是更长的循环,冷启动条件。另一方面,一旦达到全面转化,就会有利于治疗系统(吃)组分的许多排气,例如,如果可以降低废气温度,则总体耐久性。采取较大的进一步排放步骤,接近例如零排放概念,我们研究了电加热催化剂(EHC)的使用,也包括预热。明确的目标是在正确的时间在正确的位置处具有正确的温度。本文研究了几种方法,关于吃架构和EHC加热策略,以达到显着的感冒开始排放。混合动力电动车辆(HEV)应用以快速的速度引入,也允许更多的可能性来支持排放策略。不仅通过额外的推进,还包括电力支持的食用设计。 Volvo Car Corporation和大陆Emitec具有有前途的结果,调查的替代品嵌入EHC的设计。与车辆性质(例如燃料消耗)的平衡当然是重要的。

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