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Suppressing the temperature effect in near infrared spectroscopy by using orthogonal signal correction

机译:通过使用正交信号校正抑制近红外光谱中的温度效应

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Temperature changes alter the near infrared spectra for liquid samples and substantially diminish the predictive ability of calibration models constructed from spectra that are not recorded under strictly controlled temperature conditions. The effect is especially significant in compounds forming hydrogen bonds, which exhibit shifts and intensity variations in their spectral absorption maxima and provide non-linear relationships between variables that require more complex models. In this work, we used the variable filtering method known as orthogonal signal correction (OSC) with a view to eliminate the spectral variability introduced by temperature change that is unrelated to the concentrations of the ingredients of an esterification reaction. Once the spurious spectral information was removed by the OSC algorithm, calibration models were constructed from spectra recorded over a broad temperature range in order to determine each individual component (PLS1) and the four reaction ingredients simultaneously (PLS2) in liquid samples. The OSC spectral treatment was found to provide more simple and accurate (RSEP<5%) predictive models that those obtained in its absence.
机译:温度的变化会改变液体样品的近红外光谱,并大大降低由严格控制温度条件下未记录的光谱构建的校准模型的预测能力。在形成氢键的化合物中,此作用尤其显着,氢键在其光谱吸收最大值中显示出位移和强度变化,并在需要更复杂模型的变量之间提供非线性关系。在这项工作中,我们使用了称为正交信号校正(OSC)的可变滤波方法,以消除由温度变化引起的与酯化反应成分浓度无关的光谱可变性。一旦通过OSC算法去除了杂散光谱信息,就可以根据在宽温度范围内记录的光谱构建校准模型,以便同时测定液体样品中的各个组分(PLS1)和四种反应成分(PLS2)。发现OSC光谱处理提供的模型比不存在OSC光谱处理的模型更简单,准确(RSEP <5%)。

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