分析化学(期刊)
谱线
化学
氧气
旋转温度
瑞利散射
原子物理学
大气温度范围
微波食品加热
电离
转动跃迁
温度测量
光学
物理
离子
热力学
角动量
有机化学
色谱法
量子力学
天文
作者
Steven Adams,Yue Wu,Zhili Zhang
摘要
The spectra of molecular oxygen through C 3 Π(v′ = 2) ← X 3 Σ(v″ = 0) transitions have been obtained by coherent microwave Rayleigh scattering (radar) from resonance-enhanced multiphoton ionization (REMPI). Measurements of rotational temperatures of molecular oxygen have been demonstrated based on the empirical analyses of the O 2 spectra without the requirement of highly resolved rotational features. Three methods, including (1) linewidth fitting, (2) linear fitting, and (3) area fitting have been investigated for temperature measurements within pure oxygen, ambient air, and H 2 –air and CH 4 –air flame environments. The first two methods were applied in a moderately low temperature environment with measurement uncertainties less than 11% and 26%, respectively. The area fitting method covered a wider temperature range, from room temperature (∼300 K) to flame temperature (∼1700 K), with minimal dependence on the fine structures of the O 2 spectra. Less elaborate than Boltzmann plot analyses of ultrafine rotational lines from congested upper rotational energy levels in O 2 (C 3 Π(v′ = 2)), these empirical analyses are predictably sensitive to the thermal distribution of molecular oxygen and have been successfully demonstrated as simple and quick methods for remote gas-phase temperature measurement.
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