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Experimental study of a low pressure stoichiometric premixed methane, methane/ethane, methane/ethane/propane and synthetic natural gas flames

机译:低压化学计量的甲烷,甲烷/乙烷,甲烷/乙烷/丙烷和合成天然气火焰预混合的实验研究

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This study reports the structure analysis of four laminar stoichiometric premixed CH_4/O_2/Ar, CH_4/C_2H_6/O_2/Ar, CH_4/C_2H_6/C_3H_8/O_2/Ar and CH_4/C_2H_6/C_3H_8-C_4H_(10)/i-C_4H_(10)-C_5H_(12)/i-C_5H_(12)-C_6H_(14)/O_2/Ar flames. The flames have been stabilized on a flat flame burner at low pressure (40 Torr). Experimental mole fraction profiles of stable and reactive species have been obtained by coupling molecular-beam/mass spectrometry (MB/MS) with gas chromatography/mass spectrometry (GC/MS) analyses. Temperature profiles were measured with a coated thermocouple in the sampling conditions. This work provides a detailed experimental data on the nature and concentrations of the stable and reactive species produced by oxidation of various representative natural gas mixtures. In addition to reactants and major products, the mole fractions of stable intermediate and reactive species have been measured. The experimental results show that ethane and propane, increase significantly intermediate species mole fractions especially olefins. On the other hand, the higher alkanes play a minor role in the oxidation of the natural gas. It appears therefore, that the combustion of methane/ethane/propane mixture represents appropriately natural gas combustion. A qualitative explanation of the experimental observations, based on the current literature mechanisms of alkanes combustion, is reported.
机译:这项研究报告了四种层流化学计量的预混合CH_4 / O_2 / Ar,CH_4 / C_2H_6 / O_2 / Ar,CH_4 / C_2H_6 / C_3H_8 / O_2 / Ar和CH_4 / C_2H_6 / C_3H_8 / n-C_4H_(10)/ i-的结构分析C_4H_(10)/ n-C_5H_(12)/ i-C_5H_(12)/ n-C_6H_(14)/ O_2 / Ar火焰。火焰已在低压(40 Torr)的平面火焰燃烧器上稳定下来。通过将分子束/质谱(MB / MS)与气相色谱/质谱(GC / MS)分析耦合,获得了稳定和反应性物质的实验摩尔分数分布图。温度曲线是在采样条件下用带涂层的热电偶测量的。这项工作提供了有关各种代表性天然气混合物氧化产生的稳定和反应性物种的性质和浓度的详细实验数据。除反应物和主要产物外,还测量了稳定的中间体和反应性物质的摩尔分数。实验结果表明,乙烷和丙烷可显着增加中间物种的摩尔分数,尤其是烯烃。另一方面,高级烷烃在天然气的氧化中起次要作用。因此,似乎甲烷/乙烷/丙烷混合物的燃烧代表适当的天然气燃烧。基于对烷烃燃烧的现有文献机理,报道了对实验观察的定性解释。

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