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In-cylinder catalysts a novel approach to reduce hydrocarbon emissions from spark-ignition engines

机译:气缸催化剂是一种新的方法来减少火花点火发动机的烃排放

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A novel approach was proposed and investigated to reduce unburned hydrocarbon emissions from spark-ignition engines using in-cylinder catalysts. The unburned hydrocarbons in spark-ignition engines arise primarily from sources near the combustion chamber walls, such as flame quenching at the entrance of crevice volumes and at the combustion chamber wall, and the absorption and desorption of fuel vapor into oil layers on the cylinder wall. The proximity of these sources of unburned hydrocarbons to the wall means that they can be reduced significantly by simply using in-cylinder catalysts on the combustion chamber walls, in particular on the surfaces of the crevice volumes. A platinum-rhodium coating was deposited on the top and side surfaces of the piston crown, and its effects on the engine combustion and emission characteristics were examined in this experimental investigation. The in-cylinder catalyst gave rise to a reduction of exhaust unburned hydrocarbon emissions by approximately 20% over a wide range of operating conditions.
机译:提出了一种新的方法,并研究了使用缸内催化剂从火花点火发动机中减少不燃烧的烃排放。火花点火发动机中的未燃烧的碳氢化合物主要来自燃烧室壁附近的源,例如在缝隙体积和燃烧室壁的入口处的火焰淬火,以及燃料蒸气在气缸壁上的油层中的吸收和解吸。这些未燃烧的烃源到壁的附近意味着通过简单地使用燃烧室壁上的缸内催化剂,特别是在缝隙体积的表面上,它们可以显着降低。在活塞冠的顶部和侧表面上沉积铂 - 铑涂层,在该实验研究中检查了其对发动机燃烧和发射特性的影响。在圆柱型催化剂上,在各种操作条件下,将排气未燃烧的烃排放的减少约20%。

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