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The Effects of Spectral Pretreatments on Chemometric Analyses of Soil Profiles Using Laboratory Imaging Spectroscopy

机译:光谱预处理对使用实验室成像光谱法对土壤剖面化学计量分析的影响

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Laboratory imaging spectroscopy can be used to explore physical and chemical variations in soil profiles on a submillimetre scale. We used a hyperspectral scanner in the 400 to 1000 nm spectral range mounted in a laboratory frame to record images of two soil cores. Samples from these cores were chemically analyzed, and spectra of the sampled regions were used to train chemometric PLS regression models. With these models detailed maps of the elemental concentrations in the soil cores could be produced. Eight different spectral pretreatments were applied to the sample spectra and to the resulting images in order to explore the influence of these pre-treatments on the estimation of elemental concentrations. We found that spectral preprocessing has a minor influence on chemometry results when powerful regression algorithms like PLSR are used.
机译:实验室成像光谱学可用于探索亚毫米尺度下土壤剖面的物理和化学变化。我们使用安装在实验室框架中的400至1000 nm光谱范围内的高光谱扫描仪来记录两个土壤核心的图像。对来自这些岩心的样品进行了化学分析,并将采样区域的光谱用于训练化学计量PLS回归模型。使用这些模型,可以生成土壤核心中元素浓度的详细地图。八种不同的光谱预处理方法应用于样品光谱和所得图像,以探讨这些预处理方法对元素浓度估算的影响。我们发现,当使用强大的回归算法(如PLSR)时,光谱预处理对化学计量学结果的影响很小。

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