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Raman Spectra of Methane, Ethylene, Ethane, Dimethyl ether, Formaldehyde and Propane for Combustion Applications

机译:燃烧应用中甲烷,乙烯,乙烷,二甲醚,甲醛和丙烷的拉曼光谱

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摘要

Spontaneous Raman scattering measurements of temperature and major species concentration in hydrocarbon-air flames require detailed knowledge of the Raman spectra of the hydrocarbons present when fuels more complex than methane are used. Although hydrocarbon spectra have been extensively studied at room temperature, there are no data available at higher temperatures. Quantum mechanical calculations, when available are not sufficiently accurate for combustion applications. This work presents experimental measurements of spontaneous Stokes-Raman scattering spectra of methane, ethylene, ethane, dimethyl ether, formaldehyde and propane in the temperature range 300-860 K. Raman spectra from heated hydrocarbons jets have been collected with a higher resolution than is generally employed for Raman measurements in combustion applications. A set of synthetic spectra have been generated for each hydrocarbon, providing the basis for extrapolation to higher temperatures. The spectra provided here will enable simultaneous measurements of multiple hydrocarbons in flames. This capability will greatly extend the range of applicability of Raman measurements in combustion applications. In addition, the experimental spectra provide a validation dataset for quantum mechanical models.
机译:对碳氢化合物-空气火焰中温度和主要物质浓度的自发拉曼散射测量需要详细了解当使用比甲烷更复杂的燃料时所存在的碳氢化合物的拉曼光谱。尽管在室温下已对碳氢化合物光谱进行了广泛研究,但在较高温度下尚无可用数据。量子力学计算(如果可用)对于燃烧应用而言不够准确。这项工作提出了在300-860 K的温度范围内甲烷,乙烯,乙烷,二甲醚,甲醛和丙烷的自发Stokes-Raman散射光谱的实验测量结果。从加热的烃类射流收集的Raman光谱的分辨率比通常的分辨率高。用于燃烧应用中的拉曼测量。已为每种烃生成了一组合成光谱,为推断到更高的温度提供了基础。此处提供的光谱将能够同时测量火焰中的多种碳氢化合物。这种能力将大大扩展拉曼测量在燃烧应用中的适用范围。此外,实验光谱为量子力学模型提供了验证数据集。

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