首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Reduction of unburnt hydrocarbon emissions from spark ignition engines using in-cylinder catalysts
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Reduction of unburnt hydrocarbon emissions from spark ignition engines using in-cylinder catalysts

机译:使用缸内催化剂减少火花点火发动机的未燃烃排放

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摘要

Exhaust unburnt hydrocarbons (HC) in spark ignition engines arise from a number of sources, including flame quenching at the entrance of crevice volumes and at the combustion chamber wall, absorption and desorption of fuel vapour into oil layerson the cylinder wall, partial burning and misfiring. All sources other than partial burning and misfiring are in close proximity to the wall surfaces of the combustion chamber. The significance of this observation is that unburnt HC emissions from sparkignition engines may be reduced at their sources of production using in-cylinder catalysts on the surfaces of the combustion chamber wall. This paper examines in detail a novel approach to reduce exhaust HC emissions using an in-cylinder catalyst on thecombustion chamber walls, in particular, the surfaces of the crevice volumes. Platinum-rhodium coating on the piston crown led to a reduction of approximately 20 per cent in engine-out HC emissions over a wide range of engine operating conditions.
机译:火花点火发动机中的未燃碳氢化合物(HC)的排放源于多种来源,包括在缝隙入口处和燃烧室壁处的火焰淬火,汽缸壁中燃油蒸气在油层中的吸收和解吸,部分燃烧和失火。 。除部分燃烧和不点火以外的所有来源都非常靠近燃烧室的壁表面。该观察结果的意义在于,使用燃烧室壁表面上的缸内催化剂,可以减少火花点火发动机未燃烧的HC排放,从而减少其产生的排放源。本文详细研究了一种使用燃烧室内壁上的缸内催化剂(特别是缝隙容积的表面)减少HC排放的新颖方法。在各种发动机工况下,活塞顶上的铂铑涂层使发动机排出的HC排放量减少了约20%。

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