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Combustion chemistry and flame structure of furan group biofuels using molecular-beam mass spectrometry and gas chromatography – Part II: 2-Methylfuran

机译:分子束质谱和气相色谱法测定呋喃类生物燃料的燃烧化学和火焰结构–第二部分:2-甲基呋喃

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摘要

This is Part II of a series of three papers which jointly address the combustion chemistry of furan and its alkylated derivatives 2-methylfuran (MF) and 2,5-dimethylfuran (DMF) under premixed low-pressure flame conditions. Some of them are considered to be promising biofuels. With furan as a common basis studied in Part I of this series, the present paper addresses two laminar premixed low-pressure (20 and 40 mbar) flat argon-diluted (50%) flames of MF which were studied with electron-ionization molecular-beam mass spectrometry (EI-MBMS) and gas chromatography (GC) for equivalence ratios φ=1.0 and 1.7, identical conditions to those for the previously reported furan flames. Mole fractions of reactants, products as well as stable and reactive intermediates were measured as a function of the distance above the burner. Kinetic modeling was performed using a comprehensive reaction mechanism for all three fuels given in Part I and described in the three parts of this series. A comparison of the experimental results and the simulation shows reasonable agreement, as also seen for the furan flames in Part I before. This set of experiments is thus considered to be a valuable additional basis for the validation of the model. The main reaction pathways of MF consumption have been derived from reaction flow analyses, and differences to furan combustion chemistry under the same conditions are discussed.
机译:这是三篇论文系列的第二部分,这些论文共同探讨了呋喃及其烷基化衍生物2-甲基呋喃(MF)和2,5-二甲基呋喃(DMF)在预混合低压火焰条件下的燃烧化学。其中一些被认为是有前途的生物燃料。本系列第一部分以呋喃为基础,研究了两种层流预混合低压(20和40 mbar)扁平氩稀释(50%)MF火焰,这些火焰是通过电子电离分子火焰进行研究的。电子束质谱(EI-MBMS)和气相色谱(GC)的当量比φ= 1.0和1.7,与先前报道的呋喃火焰的条件相同。测量反应物,产物以及稳定的和反应性中间体的摩尔分数,作为燃烧器上方距离的函数。动力学建模是使用综合反应机理对第一部分中给出的所有三种燃料进行的,并在本系列的三个部分中进行了描述。实验结果与模拟结果的比较显示出合理的一致性,正如之前第一部分中的呋喃火焰所示。因此,这组实验被认为是模型验证的有价值的附加基础。 MF消耗的主要反应途径是通过反应流分析得出的,并讨论了相同条件下呋喃燃烧化学的差异。

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