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The Effects of Nitrogen-Containing Compounds on PAH and Soot across a Suite of Laboratory Devices

机译:一套实验室设备中含氮化合物对PAH和烟灰的影响

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The effect of nitrogen-bearing fuel additives on soot and PAH emissions formation has been investigated in a collaborative university, industrial and governmental effort. The overall objective of this program was to obtain fundamental understanding of how changes in fuel composition can effect soot and PAH emissions from military aircraft combustors. Six different laboratory burners, including a premixed flat flame, an opposed-flow diffusion flame, a well-stirred reactor, a turbulent spray flame, a shock tube, and a high pressure turbulent combustor were used to investigate the impact of additives covering a wide range of combustion conditions. The additives included various nitroalkanes (nitromethane, nitroethane, and nitropropane), i-propylnitrate, nitrogen dioxide, pyridine and quinoline. Fuels included ethylene, a heptane/toluene blend and JP8. The effects of many of the additives were examined in most experimental facilities and the results were contrasted and compared. The experimental results were also modeled using a variety of modeling packages and mechanisms. Reductions in soot were as large as 70%, although in some cases no change was detected; in others, increases were observed. Modeling failed to offer explanations for all of the experimental observations. This paper will summarize the key results, our interpretations, and suggest some needs for future research.
机译:在大学,工业界和政府的共同努力下,已经研究了含氮燃料添加剂对烟灰和多环芳烃排放物形成的影响。该计划的总体目标是对燃料成分的变化如何影响军用飞机燃烧器的烟灰和PAH排放有基本的了解。使用六种不同的实验室燃烧器,包括预混平火焰,逆流扩散火焰,搅拌良好的反应器​​,湍流喷雾火焰,激波管和高压湍流燃烧器,来研究添加剂在广泛范围内的影响。燃烧条件范围。添加剂包括各种硝基烷(硝基甲烷,硝基乙烷和硝基丙烷),硝酸异丙酯,二氧化氮,吡啶和喹啉。燃料包括乙烯,庚烷/甲苯混合物和JP8。在大多数实验设备中检查了许多添加剂的作用,并对结果进行了比较和比较。还使用各种建模程序包和机制对实验结果进行了建模。烟尘减少高达70%,尽管在某些情况下未发现变化。在其他国家,观察到增加。建模未能为所有实验观察提供解释。本文将总结主要结果,我们的解释,并提出一些未来研究的需求。

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