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The effect of fuel composition on hydrocarbon emissions from a spark-ignition engine: iso-octane/toluene and n-octane/toluene fuel mixtures

机译:火花点火发动机燃料组合物对烃排放的影响:异辛烷/甲苯和正辛烷/甲苯燃料混合物

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The purpose of this research was to investigate the effect of fuel type and mixture composition on hydrocarbon (HC) emissions from a homogeneous-charge, spark-ignition engine. Detailed chemical kinetic modeling indicated that at the temperatures of relevance for HC consumption in engines ( T >1500 K) a majority of the parent fuel decomposes by unimolecular thermal decomposition and that the radical pool which consumes the remaining smaller HC species is produced from the decomposition of the fuel These results suggested that chemical kinetic interactions should exist between fuel components in a fuel mixture. Engine experiments were performed with iso-octane/toluene and n-octane/toluene fuel mixtures to determine whether kinetic interactions exist within an engine. Engine-out HC emissions exhibited a non-linear response to the amount of the paraffin in the fuel mixture and demonstrated that kinetic interactions do occur between fuel species. The kinetic interaction between the fuel components is through their effect on the production of the local radical pool in the hydrocarbon oxidation zone.
机译:该研究的目的是研究燃料型和混合组合物对均匀电荷,火花点火发动机的烃(HC)排放对烃(HC)排放的影响。详细的化学动力学建模表明,在发动机的HC消耗的相关性(t> 1500k)的温度下,大多数母燃料通过单分子的热分解分解,并且从分解中产生消耗剩余较小的HC物种的自由基池这些结果表明,化学动力学相互作用应在燃料混合物中的燃料组分之间存在。用异辛烷/甲苯和正辛烷/甲苯/甲苯燃料混合物进行发动机实验,以确定发动机内是否存在动力学相互作用。发动机外的HC排放表现出对燃料混合物中石蜡的量的非线性响应,并证明了燃料种类之间发生的动力学相互作用。燃料部件之间的动力学相互作用是它们对烃氧化区中局部自由基池的产生的影响。

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