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Studies of pyrolysis and oxidation of methyl formate using molecular beam mass spectrometry

机译:用分子束质谱法测定甲酸甲酯热解和氧化研究

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Molecular beam mass spectrometry with electron impact ionization coupled with a quartz flow reactor has been employed to study the pyrolysis and the oxidation mechanism of methyl formate (MF) at atmospheric pressure. The measurement was carried out with a mixture of gas phase at 5000 ppm MF in Helium and Argon dilution in the temperature range from 500 K to 1000 K with the reaction residence time of 600 milliseconds. Important stable species such as methanol, carbon monoxide, carbon dioxide, formaldehyde, water as well as radical species such as HCO were quantified in the mass spectrum. Effect of electron impact fragmentation of MF and methanol on species measurements is calibrated and subtracted. Experimental uncertainty is estimated to be approximately 10% for MF at 95% confidence. The experimental results showed that pyrolysis and oxidation take place for the temperature higher than 700 K with the increase of products such as methanol, carbon monoxide and carbon dioxide. Numerical simulations using a Princeton Ester-Mech kinetic model and a LLNL model have been performed. The results show that the model under-predicts the formation of CO for the pyrolysis study and CO_2 for the oxidation study, respectively. The discrepancy between the measured and the predicted profile implies that the reaction pathways for hydrogen abstractions from MF forming CH_2OCHO and CH_3OCO are under-predicted in the modeling.
机译:已经采用与石英流反应器偶联的电子碰撞电离的分子束质谱法研究了甲酯(MF)在大气压下的热解和氧化机制。通过在氦气中为5000ppm MF的气相混合物进行测量,并且在500k至1000k的温度范围内的氩气稀释,反应停留时间为600毫秒。在质谱中量化了重要的稳定物种,如甲醇,一氧化碳,二氧化碳,甲醛,水和自由基物质如HCO。 MF和甲醇对物种测量的电子冲击破碎物质的影响被校准并减去。实验不确定性估计为95%信心的MF约为10%。实验结果表明,随着产品,甲醇,一氧化碳和二氧化碳等产品的增加,热解和氧化发生高于700 k。已经进行了使用普林斯顿酯-MECH动力学模型和LLNL模型的数值模拟。结果表明,该模型预测了CO用于热解性研究的形成和氧化研究的CO_2。所测量的和预测的轮廓之间的差异意味着用于从MF形成CH_2OCHO和CH_3OCO氢抽象反应途径在建模下预测。

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