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The Effect of Molecular Structure on Soot Emission of a Heavy-Duty Compression-Ignition Engine

机译:分子结构对重型压缩 - 点火发动机烟灰发射的影响

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Numerous previous studies have reported that the reduction of emissions by adapting oxygenated bio-fuels chiefly depend on the overall oxygen percentage of the blended oxygenates. However, the effect of molecular structures of the fuels has sometimes only been attributed to differences in auto-ignition quality (i.e. cetane number). In this paper, fuels with two kinds of molecular structures, namely linear and cyclic, have been studied. It reports on emissions tests on a modified in-line 6-cylinder DAF HD Diesel engine with several selected oxygenates mixed with diesel. Fuels in question here are from the non-oxygenates group: n-hexane and cyclohexane, and the oxygenate group: 1-hexanol and cyclohexanol. In order to isolate the effect of molecular structure, the blend compositions are chosen such that the overall oxygen fraction of all blends is the same. In the conclusions, some suggestions for adoption of appropriate bio-fuels as alternatives of diesel for lower emissions have been proposed by being observed differences in soot emission propensities.
机译:众多先前的研究报道说,通过调整含氧生物燃料的减少,主要取决于混合含氧化合物的整体氧百分比。然而,燃料的分子结构的影响有时仅归因于自动点火质量的差异(即十六烷值)。本文研究了两种分子结构,即线性和环状的燃料。它报告了对改进的在线6缸DAF柴油发动机的排放测试,其中几种选定的含氧化合物与柴油混合。这里有问题的燃料来自非含氧化合物组:正己烷和环己烷,和含氧基团:1-己醇和环己醇。为了分离分子结构的效果,选择共混物组合物,使得所有共混物的整体氧比例是相同的。在结论中,通过观察到苏联排放效力的差异,提出了作为柴油柴油替代品作为柴油替代品的一些建议。

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