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首页> 外文期刊>Applied optics >Background corrections for laser-induced-fluorescence measurements of nitric oxide in lean, high-pressure, premixed methane flames
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Background corrections for laser-induced-fluorescence measurements of nitric oxide in lean, high-pressure, premixed methane flames

机译:稀薄,高压,预混合甲烷火焰中一氧化氮的激光诱导荧光测量的背景校正

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摘要

An experimental technique is presented that both minimizes and accounts for the interference background when laser-induced-fluorescence (LIF) measurements are made of NO in lean, high-pressure, premixed, CH4/O-2/N-2 flames. Measurement interferences such as fluorescence and Raman scattering from secondary species become increasingly important for high-pressure LIF studies. O-2 fluorescence interferences are particularly troublesome in lean premixed flames. An excitation-detection scheme that minimizes the effects of these interferences is identified. A procedure that corrects the resulting LIF signal so as to account for any remaining interference signal is then developed. This correction is found to vary from less than 10% of the overall NO signal at atmospheric pressure to over 40% of the overall signal at 14.6 atm for LIF measurements of NO in a series of worst-case flames (phi = 0.6, dilution ratio 2.2). The correction technique is further demonstrated to be portable over a useful range of flame conditions at each pressure. (C) 1997 Optical Society of America.
机译:提出了一种实验技术,当在稀薄,高压,预混合,CH4 / O-2 / N-2火焰中对NO进行激光诱导荧光(LIF)测量时,既可以最小化干扰背景,又可以解决干扰背景。测量干扰,例如来自次级物种的荧光和拉曼散射,对于高压LIF研究变得越来越重要。在稀薄的预混火焰中,O-2荧光干扰特别麻烦。确定了一种最小化这些干扰影响的激励检测方案。然后开发一种程序,该程序校正所得的LIF信号,以解决任何剩余的干扰信号。对于一系列最坏情况下的火焰(phi = 0.6,稀释比),LIF测量NO的情况下,发现该校正范围从大气压下的总NO信号的不到10%到14.6 atm的总信号的40%以上不等。 2.2)。进一步证明了该校正技术可在每种压力下在火焰条件的有用范围内移植。 (C)1997年美国眼镜学会。

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