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Combining Fourier Transform Mid-Infrared Spectroscopy with Chemometric Methods to Detect Adulterations in Milk Powder

机译:将傅里叶变换中红外光谱与化学计量方法相结合,以检测奶粉掺杂

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摘要

Adulteration is one of the major concerns among all the quality problems of milk powder. Soybean flour and rice flour are harmless adulterations in the milk powder. In this study, mid-infrared spectroscopy was used to detect the milk powder adulterated with rice flour or soybean flour and simultaneously determine the adulterations content. Partial least squares (PLS), support vector machine (SVM) and extreme learning machine (ELM) were used to establish classification and regression models using full spectra and optimal wavenumbers. ELM models using the optimal wavenumbers selected by principal component analysis (PCA) loadings obtained good results with all the sensitivity and specificity over 90%. Regression models using the full spectra and the optimal wavenumbers selected by successive projections algorithm (SPA) obtained good results, with coefficient of determination (R2) of calibration and prediction all over 0.9 and the predictive residual deviation (RPD) over 3. The classification results of ELM models and the determination results of adulterations content indicated that the mid-infrared spectroscopy was an effective technique to detect the rice flour and soybean flour adulteration in the milk powder. This study would help to apply mid-infrared spectroscopy to the detection of adulterations such as rice flour and soybean flour in real-world conditions.
机译:掺假是奶粉所有质量问题中的主要问题之一。大豆面粉和米粉是奶粉中无害的掺杂。在该研究中,使用中红外光谱法检测掺米粉或大豆面粉掺杂的乳粉,同时确定掺杂含量。部分最小二乘(PLS),支持向量机(SVM)和极端学习机(ELM)用于使用全光谱和最佳波数建立分类和回归模型。使用主成分分析(PCA)载荷选择的最佳波数的ELM模型获得了良好的结果,所有敏感性和特异性超过90%。使用全光谱和由连续投影算法(SPA)选择的最佳波数的回归模型获得了良好的结果,其中校准和预测的校准系数(R2)均超过0.9和预测残留偏差(RPD)。分类结果ELM模型和adulterations内容的确定结果的显示,中红外光谱来检测米粉和大豆粉掺假奶粉中的一种有效的技术。该研究将有助于将中红外光谱施加到真实条件下的粉末和大豆面粉等掺杂物中的检测。

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