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Combining linear polarization spectroscopy and the Representative Layer Theory to measure the Beer-Lambert law absorbance of highly scattering materials

机译:结合线性偏振光谱和代表层理论来测量高散射材料的比尔朗伯定律吸光度

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摘要

Visible and Near Infrared (Vis-NIR) Spectroscopy is a powerful non destructive analytical method used to analyze major compounds in bulk materials and products and requiring no sample preparation. It is widely used in routine analysis and also in-line in industries, in-vivo with biomedical applications or in-field for agricultural and environmental applications. However, highly scattering samples subvert Beer-Lambert law's linear relationship between spectral absorbance and the concentrations. Instead of spectral pre-processing, which is commonly used by Vis-NIR spectroscopists to mitigate the scattering effect, we put forward an optical method, based on Polarized Light Spectroscopy to improve the absorbance signal measurement on highly scattering samples. This method selects part of the signal which is less impacted by scattering. The resulted signal is combined in the Absorption/Remission function defined in Dahm's Representative Layer Theory to compute an absorbance signal fulfilling Beer-Lambert's law, i.e. being linearly related to concentration of the chemicals composing the sample. The underpinning theories have been experimentally evaluated on scattering samples in liquid form and in powdered form. The method produced more accurate spectra and the Pearson's coefficient assessing the linearity between the absorbance spectra and the concentration of the added dye improved from 0.94 to 0.99 for liquid samples and 0.84-0.97 for powdered samples. (C) 2014 Elsevier B.V. All rights reserved.
机译:可见和近红外(Vis-NIR)光谱是一种功能强大的非破坏性分析方法,用于分析散装物料和产品中的主要化合物,不需要样品制备。它被广泛用于常规分析以及工业,生物医学应用的体内或农业和环境应用的现场分析中。但是,高度散射的样品破坏了比尔-朗伯定律在光谱吸收率和浓度之间的线性关系。代替Vis-NIR光谱学家通常使用的光谱预处理来减轻散射效果,我们提出了一种基于偏振光光谱的光学方法,以改善高散射样品的吸光度信号测量。该方法选择了较少受到散射影响的信号部分。将结果信号与达姆代表层理论中定义的吸收/释放函数合并,以计算满足比尔-朗伯定律的吸光度信号,即与组成样品的化学物质的浓度呈线性关系。对液体形式和粉末形式的散射样品进行了实验评估,证明了基础理论。该方法产生的光谱更准确,液体样品的吸光度光谱和所添加染料浓度的线性关系的皮尔逊系数从0.94提高到0.99,粉末样品从0.84-0.97提高。 (C)2014 Elsevier B.V.保留所有权利。

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