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Performance and Emission Characteristics of Heptane/Toluene Blends at Constant Injection Operation on a CI Engine

机译:庚烷/甲苯共混物在CI发动机恒定注射操作下的性能和排放特性

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Hydrocarbons are chemical compounds whose molecules are made of hydrogen and carbon. Heptane is an aliphatic hydrocarbon with good ignition quality and high cetane number, while Toluene is an aromatic hydrocarbon with a very poor ignition quality and very low cetane number. The two different compounds are blended in varying proportion and tested in a single cylinder 2.0L Ford Puma automotive diesel engine to investigate their effect on engine performance and emission. The cylinder pressure, heat release rate, exhaust gas emissions and particulate were measured. The results show that H70T30 blend has the highest specific NOX emission which was due to the high peak temperature and produces slightly more soot than pure heptane (H100T0). H50T50 attained the lowest heat release rate, peak cylinder pressure and temperature. These low values favour the formation of low NOx, high amount of unburned hydrocarbon and high amount of soot particles. Although heptane has a high cetane number, it fails to act as an ignition improver to toluene.
机译:烃是化学化合物,其分子由氢和碳制成。庚烷是一种具有良好点火质量和高十六烷数的脂族烃,而甲苯是一种具有非常差的点火质量和非常低的十六烷值的芳烃。两种不同的化合物以不同的比例混合并在单缸2.0L福特Puma汽车柴油机中测试,以研究它们对发动机性能和发射的影响。测量气缸压力,散热速率,废气排放和颗粒。结果表明,H70T30混合物具有最高的特异性NOx排放,其由于高峰温度高,并且产生的烟灰稍微比纯庚烷(H100T0)略微。 H50T50达到最低的热释放速率,峰值缸压力和温度。这些低值赞成形成低NOx,大量不燃烧的烃和大量烟灰颗粒。虽然庚烷具有高十六烷值,但它不能作为甲苯的点火改进剂。

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