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首页> 外文期刊>Applied optics >Absorption measurements of the second overtone band of NO in ambient and combustion gases with a 1.8-mu m room-temperature diode laser
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Absorption measurements of the second overtone band of NO in ambient and combustion gases with a 1.8-mu m room-temperature diode laser

机译:用1.8微米室温二极管激光器测量环境气体和燃烧气体中NO的第二个泛音带

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摘要

We describe the development of a room-temperature diode sensor for in situ monitoring of combustion-generated NO. The sensor is based on a near-IR diode laser operating near 1.8 mu m, which probes isolated transitions in the second overtone (3,0) absorption band of NO. Based on absorption cell data, the sensitivity for ambient atmospheric pressure conditions is of the order of 30 parts in 10(6) by volume for a meter path (ppmv-m), assuming a minimum measurable absorbance of 10(-5). Initial H-2-air flame measurements are complicated by strong water vapor absorption features that constrain the available gain and dynamic range of the present detection system. Preliminary results suggest that detection limits in this environment of the order of 140 ppmv-m could be achieved with optimum baseline correction. (C) 1997 Optical Society of America.
机译:我们描述了一种室温二极管传感器的开发,该传感器用于原位监测燃烧产生的NO。该传感器基于工作在1.8微米附近的近红外二极管激光器,可探测NO的第二个泛音(3,0)吸收带中的孤立跃迁。根据吸收池数据,假设最小可测吸收度为10(-5),则对于米路径(ppmv-m),环境大气压力条件的灵敏度约为10(6)体积的30份。最初的H-2-空气火焰测量由于强大的水蒸气吸收功能而变得复杂,这些特征限制了本检测系统的可用增益和动态范围。初步结果表明,采用最佳基线校正可以在这种环境下达到140 ppmv-m的检测限。 (C)1997年美国眼镜学会。

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