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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >High-temperature measurements of methane and acetylene using quantum cascade laser absorption near 8 mu m
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High-temperature measurements of methane and acetylene using quantum cascade laser absorption near 8 mu m

机译:量子级联激光吸收在8μm附近对甲烷和乙炔进行高温测量

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摘要

The mid-infrared wavelength region near 8 mu m contains absorption bands of several molecules such as water vapor, hydrogen peroxide, nitrous oxide, methane and acetylene. A new laser absorption sensor based on the v(4) band of methane and the v(4)+v(5) band of acetylene is reported for interference-free, time-resolved measurements under combustion-relevant conditions. A detailed line-selection procedure was used to identify optimum transitions. Methane and acetylene were measured at the line centers of Q12 (1303.5 cm(-1)) and P23 (1275.5 cm(-1)) transitions, respectively. High-temperature absorption cross sections of methane and acetylene were measured at peaks (on-line) and valleys (off-line) of the selected absorption transitions. The differential absorption strategy was employed to eliminate interference absorption from large hydrocarbons. Experiments were performed behind reflected shock waves over a temperature range of 1200-2200 K, between pressures of 1-4 atm. The diagnostics were then applied to measure the respective species time-history profiles during the shock-heated pyrolysis of n-pentane. (C) 2015 Elsevier Ltd. All rights reserved.
机译:8微米附近的中红外波长区域包含几个分子的吸收带,例如水蒸气,过氧化氢,一氧化二氮,甲烷和乙炔。据报道,基于甲烷的v(4)谱带和乙炔的v(4)+ v(5)谱带的新型激光吸收传感器可在与燃烧相关的条件下进行无干扰,时间分辨的测量。详细的线选择程序用于确定最佳过渡。分别在Q12(1303.5 cm(-1))和P23(1275.5 cm(-1))过渡的线中心处测量甲烷和乙炔。在选定的吸收跃迁的峰(在线)和谷(离线)处测量甲烷和乙炔的高温吸收截面。差分吸收策略用于消除大烃的干扰吸收。实验是在1200至2200 K的温度范围(介于1-4个大气压)之间的反射冲击波之后进行的。然后,将诊断程序应用于在正戊烷的热休克热解过程中测量各个物种的时间历史曲线。 (C)2015 Elsevier Ltd.保留所有权利。

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