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Impact of nitric oxide (NO) on n-heptane autoignition in a rapid compression machine

机译:一氧化氮(NO)对快速压缩机中正庚烷自燃的影响

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This paper investigates the impact of nitric oxide (NO) on n-heptane ignition in a rapid compression machine (RCM). The ignition delays of stoichiometric mixtures of n-heptane and varying amounts of NO (0-400 ppm) are measured in an argon diluent at 9 bar and over 650-1000 K. In the low temperature oxidation regime (<= 720K), ignition of n-heptane was promoted by NO up to 100 ppm, whilst higher NO levels do not further promote ignition. Stronger promoting effects are observed in the negative temperature coefficient (NTC) regime and at higher temperatures where the ignition delays are monotonically reduced with up to 400 ppm NO addition. Such impacts significantly suppress the NTC behaviour of pure n-heptane's oxidation. Kinetic modelling is then conducted using the mechanisms of Anderlohr et al. (2009) and Contino et al. (2013) to simulate the measured ignition delays, as well as the species profiles in a jet stirred reactor (JSR) reported in the literature. This modelling indicates that the reactions between NO and hydrocarbon species larger than C2 are important for reproducing both the RCM and JSR data. However, the rate constants for some of the reactions in the mechanism of Anderlohr et al. appear to be overestimated when compared to the literature, and also cause overprediction of the retarding effect on n-heptane autoignition at low temperatures. Use of these previously published rate constants in a revised mechanism is then found to significantly improve the agreement with the low temperature RCM data whilst retaining the good agreement with the higher temperature RCM data and the JSR data. (C) 2017 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:本文研究了一氧化氮(NO)对快速压缩机(RCM)中正庚烷着火的影响。在9 bar和650-1000 K以上的氩气稀释液中测量正庚烷和不同量的NO(0-400 ppm)的化学计量混合物的点火延迟。在低温氧化条件(<= 720K)中,点火高达100 ppm的NO促进正庚烷的燃烧,而更高的NO含量则不会进一步促进点火。在负温度系数(NTC)方案和更高的温度下观察到较强的促进作用,在该温度下,通过添加高达400 ppm的NO可以单调减少点火延迟。这种影响显着抑制了纯正庚烷氧化的NTC行为。然后使用Anderlohr等人的机制进行动力学建模。 (2009年)和Contino等人。 (2013年),以模拟测得的点火延迟,以及文献报道的喷射搅拌反应器(JSR)中的物质分布。该模型表明,NO和大于C2的烃类之间的反应对于复制RCM和JSR数据都很重要。但是,在Anderlohr等人的机理中,某些反应的速率常数是恒定的。与文献相比,它似乎被高估了,并且还导致对低温下正庚烷自燃的阻滞作用的过高预测。然后发现在修订的机制中使用这些先前发布的速率常数可以显着改善与低温RCM数据的一致性,同时保持与高温RCM数据和JSR数据的良好一致性。 (C)2017燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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