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Detailed Analysis of iso-Pentanol Combustion Chemistry in Flames

机译:火焰中异戊二醇燃烧化学的详细分析

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In this study, two flames of iso-pentanol were stabilized on a 60-mm flat flame burner at a low pressure of 15 Torr and analyzed by a flame-sampling molecular-beam setup coupled to a mass spectrometer (MBMS). Single-photon ionization by synchrotron-generated vacuum-UV radiation with high energy resolution (E/ΔE ~0.04 eV) and/or electron ionization was combined with a custom-built reflectron time-of-flight spectrometer providing high mass resolution (m/Δm = 3000). Mole fraction profiles for more than 40 flame species and the temperature profile were determined experimentally. The flame temperatures were measured using OH laser induced fluorescence and used as input parameters for the model calculations. The experimental dataset was used to guide the development of a combustion chemistry model for the high-temperature oxidation chemistry of iso-pentanol. The chemical kinetic model is herein validated for the first time against detailed speciation profiles of combustion intermediates and product species including C_5 branched aldehydes, enols, and alkenes. In a separated study, the model was validated against a number of different datasets including low and high temperature ignition delay in rapid compression machines and shock tubes, jet stirred reactor speciation data, premixed laminar flame speed, and opposed-flow diffusion flame strained extinction.
机译:在这项研究中,异戊醇两个火焰在15乇的低压被稳定在一个60毫米的平焰燃烧器,并通过耦合到质谱仪(MBMS)的火焰采样分子束设置进行分析。通过用高能量分辨率(E /ΔE〜0.04电子伏特)和/或电子电离同步加速器产生的真空紫外线辐射的单光子电离用时间飞行定制反射器分光计提供高的质量分辨率(米合并/ ΔM= 3000)。超过40种火焰和温度曲线摩尔分数分布被实验确定。使用OH激光诱导荧光测量并用作用于模型计算输入参数的火焰温度。实验数据集用于指导对异戊醇的高温氧化化学燃烧化学模型的发展。化学动力学模型在本文中被验证首次针对燃烧中间体的详细的形态配置文件和产品种类包括C_5支链醛,烯醇,和烯烃。在单独的研究中,模型验证针对多个不同的数据集,包括在快速压缩机和冲击管,喷气搅拌的反应器的形态数据,预混合层流火焰速度低和高温点火延迟,以及相对的流扩散火焰应变灭绝。

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