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Concentration measurement of gas embedded in scattering media by employing absorption and time-resolved laser spectroscopy

机译:采用吸收和时间分辨激光光谱法测量嵌入散射介质中的气体浓度

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摘要

Diode-laser-based absorption spectroscopy for the evaluation of embedded gas concentrations in porous materials is demonstrated in measurements of molecular oxygen dispersed throughout scattering polystyrene foam, used here as a generic test material. The mean path length of light scattered in the material is determined with the temporal characteristics of the radiation transmitted through the sample. This combined with sensitive gas-absorption measurements employing wavelength-modulation spectroscopy yields an oxygen concentration in polystyrene foam of 20.4% corresponding to a foam porosity of 98%, which is consistent with manufacturing specifications. This feasibility study opens many possibilities for quantitative measurements by using the method of gas-in-scattering-media absorption spectroscopy. (C) 2002 Optical Society of America.
机译:基于二极管激光的吸收光谱法用于评估多孔材料中所含气体的浓度,可通过测量分散在整个聚苯乙烯泡沫中的分子氧来证明,此处用作通用测试材料。散布在材料中的光的平均路径长度取决于透过样品的辐射的时间特性。这与使用波长调制光谱的灵敏气体吸收测量相结合,可在聚苯乙烯泡沫中产生20.4%的氧气浓度,对应于98%的泡沫孔隙率,这与制造规范一致。这项可行性研究通过使用散射气体吸收介质吸收光谱法为定量测量提供了许多可能性。 (C)2002年美国眼镜学会。

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