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Effect of hydrocarbon molecular structure on diesel exhaust emissions part 1: Comparison of combustion and exhaust emission characteristics among representative diesel fuels

机译:碳氢化合物分子结构对柴油气排放部分1的影响:代表性柴油燃料中燃烧和排放特性的比较

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Combustion and exhaust emission characteristics were compared among three representative diesel fuels called "base (corresponding to a Japanese market fuel)", "improved" and Swedish "class-1" using both a modern small and an optically accessible single-cylinder DI diesel engines. In these tests, the relative amount of PM collected in the exhaust as "base" > "class-1" >"improved" at almost all of the operating conditions. This mans that "class-1" generated more PN than "improved", even though "class-1" has significantly lower distillation temperatures, aromatic content, sulfur, and density compared with "improved". There was little difference in combustion characteristics such as heat release rate pattern, mixture formation and flame development processes between these two fuels. However, it was found that "class-1" contained more branches in the paraffin fraction and more naphthenes. From these results, there is a possibility that branched structures in the paraffin fraction and naphthenes in diesel fuels can influence the PM emissions, especially in the case of low aromatic content fuels.
机译:使用现代小型和光学可访问的单缸DI柴油发动机(“改进”和瑞典),“改进”和瑞典“改进”和瑞典“改进”和瑞典“级”和瑞典“和瑞典”和瑞典“和瑞典语”和瑞典语“的燃烧和废气排放特性。 。在这些测试中,在几乎所有操作条件下,排气中收集的PM的相对量为“基础”>“1”>“改进”。这名来“1”产生比“改进”产生更多PN,即使“-1”的蒸馏温度,芳族含量,硫和密度相比,与“改进”有明显较低。燃烧特性差异很小,例如热释放速率模式,混合物形成和这两个燃料之间的火焰开发过程。然而,发现“第1类”含有更多的石蜡馏分和更多的环萘。从这些结果来看,柴油燃料中石蜡馏分和环烷烃中的支化结构可能会影响PM排放,特别是在低芳族含量燃料的情况下。

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