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Experimental Study of Tetralin Oxidation and Kinetic Modeling of Its Pyrolysis and Oxidation

机译:转络氧化与热解和氧化动力学建模的实验研究

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Tetralin is the simplest polycyclic naphtheno-aromatic hydrocarbon found in liquid fuels (e.g., jet fuels, diesel). It is also produced by the pyrolysis and oxidation of decalin. To get a better understanding of tetralin combustion characteristics, new oxidation experiments were performed in a jet-stirred reactor, and the results are reported here. For the first time, stable species concentration profiles were measured at 1 and 10 atm over a range of equivalence ratios (Φ = 0.5—1.5) and temperatures (790-1400 K). The oxidation of tetralin under these conditions was simulated using a semidetailed kinetic reaction scheme (~10 000 reactions and ~400 species) deriving from a chemical kinetic model proposed earlier for the oxidation of decalin over a wide range of conditions (jet-stirred reactor, plug-flow reactor, and shock-tube). The proposed kinetic model shows reasonable agreement with the present measurements. It can also be used to represent tetralin pyrolysis based on a variety of results available in the literature. Sensitivity analyses and reaction pathway computations were used for rationalizing the results.
机译:四特兰林是液体燃料中最简单的多环萘芳烃(例如,喷射燃料,柴油)。它也是由癸蛋白的热解和氧化产生的。为了更好地理解四ralin燃烧特性,在喷射搅拌的反应器中进行新的氧化实验,并在此报告结果。首次,在一定的等效比(φ= 0.5-1.5)和温度(790-1400k)上以1和10atm测量稳定的物种浓度谱。使用从早些时候提出的化学动力学模型的半胎儿的动力学反应方案(〜10 000反应和〜400种)模拟了这种条件下的转虫蛋白的氧化在很多条件下氧化癸蛋白(喷射式反应器,插头流量反应器和冲击管)。该拟议的动力学模型显示出与目前的测量合理的协议。它也可用于基于文献中可获得的各种结果来代表四特素热解。敏感性分析和反应途径计算用于合理化结果。

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