激波后正丁醇与氧反应的原子吸收光谱法实验研究

N. Bystrov, A. Emelianov, A. Eremin, P. Yatsenko
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引用次数: 3

摘要

本文介绍了在1600-2600 K的温度范围内,在2-3 bar的压力下,反射冲击波作用下正丁醇高温氧化过程中原子氧浓度的时间曲线的新数据。研究了nC4H9OH与氧原子反应的动力学。在混合物中加入少量的氧化亚氮N2O作为氧原子的来源。利用原子共振吸收光谱(ARAS)在O原子(λ = 130.5 nm)共振线上进行了氧原子浓度谱的定量测量。使用Chemkin包对所得数据进行动力学分析。实验结果与正丁醇的实际动态燃烧方案进行了比较。结果表明,文献中现有的正丁醇燃烧动力学方案在某些情况下与实验结果不完全一致。对现有动力学方案进行了可能的补充分析。结果表明,现有的正丁醇高温燃烧动力学方案有可能得到改进。
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Experimental study of reaction of n-butanol with oxygen behind shock waves using ARAS method
This paper presents new data on the time profiles of the concentration of atomic oxygen obtained during high-temperature oxidation of n-butanol behind reflected shock waves in the temperature range of 1600–2600 K at pressures of 2–3 bar. The kinetics of the reaction of nC4H9OH with atomic oxygen has been studied. As a source of oxygen atoms, a small amount of nitrous oxide N2O was added to the mixture. Quantitative measurements of the concentration profiles of oxygen atoms were carried out using atomic resonance absorption spectroscopy (ARAS) on the resonance line of the O atom (λ = 130.5 nm). Kinetic analysis of the obtained data was carried out using the Chemkin package. The experimental results obtained are compared with actual kinetic combustion schemes of n-butanol. It is shown that the kinetic schemes of n-butanol combustion available in the literature in some cases do not exactly agree with the experimental results. An analysis of possible additions to the existing kinetic schemes was carried out. As a result, it was suggested possible improvement to the existing kinetic schemes for the combustion of n-butanol at high temperatures.
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