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含氧烃对柴油机碳烟排放影响的化学动力学建模研究

Chemical kinetic modeling study of the effects of oxygenated hydrocarbons on soot emissions from diesel engines.

作者信息

Westbrook Charles K, Pitz William J, Curran Henry J

机构信息

Lawrence Livermore National Laboratory, P.O. Box 808, Livermore, California 94550, USA.

出版信息

J Phys Chem A. 2006 Jun 1;110(21):6912-22. doi: 10.1021/jp056362g.

Abstract

A detailed chemical kinetic modeling approach is used to examine the phenomenon of suppression of sooting in diesel engines by the addition of oxygenated hydrocarbon species to the fuel. This suppression, which has been observed experimentally for a few years, is explained kinetically as a reduction in concentrations of soot precursors present in the hot products of a fuel-rich diesel ignition zone when oxygenates are included. The kinetic model is also used to show how different oxygenates, ester structures in particular, can have different soot-suppression efficiencies due to differences in the molecular structure of the oxygenated species.

摘要

采用详细的化学动力学建模方法来研究通过向燃料中添加含氧烃类物质抑制柴油机碳烟生成的现象。这种抑制现象已通过实验观测了数年,从动力学角度解释为当加入含氧化合物时,富燃料柴油着火区热产物中碳烟前驱体的浓度降低。该动力学模型还用于展示不同的含氧化合物,特别是酯结构,由于含氧化合物分子结构的差异,如何具有不同的碳烟抑制效率。

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