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首页> 外文期刊>International Journal of Chemical Kinetics >Influence of the double bond position in combustion chemistry of methyl butene isomers: A shock tube and laser absorption study
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Influence of the double bond position in combustion chemistry of methyl butene isomers: A shock tube and laser absorption study

机译:甲基丁烯异构体燃烧化学中双键位置的影响:冲击管和激光吸收研究

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Shock tube experiments have been carried out on 2-methyl-1-butene (2M1B), 2-methyl-2-butene (2M2B), and 3-methyl-1-butene (3M1B)-the three isomers of methyl butene compound. Carbon monoxide (CO) time-histories and ignition delay times are obtained behind reflected shockwaves over the temperature range of 1350-1630 K and pressures of 8.3-10.5 atm with stoichiometric mixtures of 0.075% fuel in O-2/Ar. Comparative ignition study reveals that 3M1B ignites significantly faster than the other two isomers, while 2M1B dissociates earlier but ignites later than 2M2B. Possible mechanisms for this behavior are discussed with ignition delay time sensitivity and reaction path analysis. In addition, time-resolved CO measurements are compared with three different reaction mechanisms from the literature. Sensitivity analyses have been carried out to identify important reactions that need attention to accurately predict the chemistry of these isomers. Further investigation into the rates of unimolecular fuel decomposition reactions and C3H3+ O-2 = CH2CO + HCO reaction are suggested based on the current investigation.
机译:已经在2-甲基-1-丁烯(2M1B),2-甲基-2-丁烯(2M2B)和3-甲基-1-丁烯(3M1B)中进行了冲击管实验 - 甲基丁烯化合物的三个异构体。在1350-1630K的温度范围内的反射冲击和8.3-10.5atm的压力下,在0.075%燃料中的温度范围内的反射冲击延迟,在反射的冲击延迟时间和点火延迟时间。比较点火研究表明,3M1B的点燃明显比其他两位异构体快,而2M1B早先解离但在2M2B后点燃。用点火延迟时间灵敏度和反应路径分析讨论这种行为的可能机制。此外,将时间分辨的CO测量与来自文献的三种不同的反应机制进行比较。已经进行了敏感性分析以确定需要注意准确预测这些异构体的化学的重要反应。进一步研究了基于当前调查的单分子燃料分解反应和C3H3 + O-2 = CH 2 CO + HCO反应的速率。

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