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Experimental and modeling study of the low to high temperature oxidation of the linear pentanone isomers: 2-pentanone and 3-pentanone

机译:直线戊酮异构体低至高温氧化的实验和建模研究:2-戊酮和3-戊酮

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Short-carbon-chain ketones are known for their high octane numbers, their knock resistance, and their low soot emission. However, studies on the combustion behavior of ketones, particularly in the low temperature regime, are sparse, and small ketones as acetone and butanone show limited low temperature chemistry (LTC). Therefore, saturated linear five-carbon ketones are good candidates to better understand the LTC of ketones and the effect of the functional carbonyl group. In this study, the ignition delay times of stoichiometric non-diluted 2- and 3-pentanone-oxygen-inert gas mixtures were measured in a rapid compression machine at pressures between 20 and 40 bar and temperatures ranging between 650 and 950 K. Furthermore, the mole fraction profiles of fuel, oxygen, intermediate species, and products were measured in a laminar flow reactor coupled with molecular-beam mass spectrometry at 0.97 bar, an equivalence ratio of 0.8 and temperatures ranging from 800 to 1050 K, to achieve a better understanding of the oxidation process of linear pentanones. A consistent detailed kinetic model was developed and validated against the newly measured experimental data for 2-pentanone and 3-pentanone to provide insight into the oxidation mechanism of pentanones. The model shows also good agreement with available data from the literature, including ignition delay times measured in a shock tube, speciation in a flat flame burner and laminar burning velocities. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:短碳链酮以其高辛烷值,抗抗抗腐蚀性及其低烟灰发射而闻名。然而,关于酮的燃烧行为,特别是在低温制度中,稀疏,小酮作为丙酮和丁酮显示有限的低温化学(LTC)。因此,饱和线性五碳酮是良好的候选者,以更好地理解酮的LTC和功能性羰基的作用。在该研究中,在快速压缩机中在20至40巴的压力下测量化学计量非稀释的2-和3-戊酮 - 氧惰性气体混合物的点火延迟时间,并且在650至950k之间的温度范围内。燃料,氧,中间物质和产物的摩尔分数分布在与0.97巴的分子束质谱耦合的层流体反应器中测量,其等效比为0.8和温度范围为800至1050 k,以实现更好了解线性戊酮的氧化过程。开发了一致的详细动力学模型,并针对新测量的2-戊酮和3-戊酮的实验数据进行了验证,以提供对戊酮的氧化机制的洞察力。该模型也显示出与文献中可用数据的良好一致性,包括在冲击管中测量的点火延迟时间,平坦火焰燃烧器和层流燃烧速度的形态。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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