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Soil emissivity and reflectance spectra measurements

机译:土壤发射率和反射光谱测量

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We present an analysis of the laboratory reflectance and emissivity spectra of 11 soil samples collected on different field campaigns carried out over a diverse suite of test sites in Europe, North Africa, and South America from 2002 to 2008. Hemispherical reflectance spectra were measured from 2.0 to 14 (mu)m with a Fourier transform infrared spectrometer, and x-ray diffraction analysis (XRD) was used to determine the mineralogical phases of the soil samples. Emissivity spectra were obtained from the hemispherical reflectance measurements using Kirchhoff's law and compared with in situ radiance measurements obtained with a CIMEL Electronique CE312-2 thermal radiometer and converted to emissivity using the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) temperature and emissivity separation algorithm. The CIMEL has five narrow bands at approximately the same positions as the ASTER. Results show a root mean square error typically below 0.015 between laboratory emissivity measurements and emissivity measurements derived from the field radiometer.
机译:我们对2002年至2008年在欧洲,北非和南美的不同测试地点进行的不同野外运动收集的11个土壤样品的实验室反射率和发射率光谱进行了分析。半球反射率光谱的测量范围为2.0用傅立叶变换红外光谱仪将其测量到14μm,并使用X射线衍射分析(XRD)确定土壤样品的矿物学相。使用基尔霍夫定律从半球反射率测量获得发射率光谱,并将其与使用CIMEL Electronique CE312-2热辐射仪获得的原地辐射率测量结果进行比较,并使用高级星载热发射和反射辐射仪(ASTER)的温度和发射率分离算法将其转换为发射率。 CIMEL在与ASTER大致相同的位置上具有五个窄带。结果显示,实验室发射率测量值与现场辐射计得出的发射率测量值之间的均方根误差通常低于0.015。

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