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将近红外光程变化与近红外光谱散射介质中的含水量相关联:迈向新的布格-比尔-朗伯定律。

Relating Near-Infrared Light Path-Length Modifications to the Water Content of Scattering Media in Near-Infrared Spectroscopy: Toward a New Bouguer-Beer-Lambert Law.

机构信息

INRAE, Univ Montpellier, LBE, 11100 Narbonne, France.

INRAE, UMR ITAP, Montpellier University, 34000 Montpellier, France.

出版信息

Anal Chem. 2021 May 4;93(17):6817-6823. doi: 10.1021/acs.analchem.1c00811. Epub 2021 Apr 22.

Abstract

In near-infrared spectroscopy (NIRS), the linear relationship between absorbance and an absorbing compound concentration has been strictly defined by the Bouguer-Beer-Lambert law only for the case of transmission measurements of nonscattering media. However, various quantitative calibrations have been successfully built both on reflectance measurements and for scattering media. Although the lack of linearity for scattering media has been observed experimentally, the sound multivariate statistics and signal processing involved in chemometrics have allowed us to overcome this problem in most cases. However, in the case of samples with varying water content, important modifications of scattering levels still make calibrations difficult to build due to nonlinearities. Moreover, even when calibration procedures are successfully developed, many preprocessing methods used do not guarantee correct spectroscopic assignments (in the sense of a pure chemical absorbance). In particular, this may prevent correct modeling and interpretation of the structure of water. In this study, dynamic near-infrared spectra acquired during a drying process allow the study of the physical effects of water content variations, with a focus on the first overtone OH absorbance region. A model sample consisting of aluminum pellets mixed with water allowed us to study this specifically, without any other absorbing interaction terms related to the dry mass-absorbing constituents. A new formulation of the Bouguer-Beer-Lambert law is proposed, by expressing path length as a power function of water content. Through this new formulation, it is shown that a better and simpler prediction model of water content may be developed, with more precise and accurate identification of water absorbance bands.

摘要

在近红外光谱(NIRS)中,仅在对无散射介质的透射测量的情况下,吸光度与吸收化合物浓度之间的线性关系才由 Bouguer-Beer-Lambert 定律严格定义。然而,基于反射率测量和散射介质,已经成功建立了各种定量校准。尽管已经从实验中观察到散射介质的非线性,但化学计量学中涉及的稳健多元统计和信号处理使我们能够在大多数情况下克服这个问题。然而,在具有变化的含水量的样品的情况下,由于非线性,散射水平的重要变化仍然使得难以建立校准。此外,即使成功开发了校准程序,所使用的许多预处理方法也不能保证正确的光谱分配(在纯化学吸光度的意义上)。特别是,这可能会阻止正确建模和解释水的结构。在这项研究中,在干燥过程中获得的动态近红外光谱允许研究含水量变化的物理效应,重点是第一泛音 OH 吸收区域。由与水混合的铝丸组成的模型样品允许我们专门研究这一点,而没有与干燥质量吸收成分有关的任何其他吸收相互作用项。通过将光路长度表示为含水量的幂函数,提出了 Bouguer-Beer-Lambert 定律的新公式。通过这个新的公式,表明可以开发出更好、更简单的含水量预测模型,并且可以更精确、更准确地识别水吸收带。

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