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Potential And Limitation Of Mid-infrared Attenuated Total Reflectance Spectroscopy For Real Time Analysis Of Raw Milk In Milking Lines

机译:挤奶生产线中牛奶实时分析的中红外衰减全反射光谱法的潜力和局限性

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Real-time information about milk composition would be very useful for managing the milking process. Mid-infrared spectroscopy, which relies on fundamental modes of molecular vibrations, is routinely used for off-line analysis of milk and the purpose of the present study was to investigate the potential of attenuated total reflectance mid-infrared spectroscopy for real-time analysis of milk in milking lines. The study was conducted with 189 samples from over 70 cows that were collected during an 18 months period. Principal component analysis, wavelets and neural networks were used to develop various models for predicting protein and fat concentration. Although reasonable protein models were obtained for some seasonal sub-datasets (determination errors <~0.15% protein), the models lacked robustness and it was not possible to develop a model suitable for all the data. Determination of fat concentration proved even more problematic and the determination errors remained unacceptably large regardless of the sub-dataset analyzed or of the spectral intervals used. These poor results can be explained by the limited penetration depth of the mid-infrared radiation that causes the spectra to be very sensitive to the presence of fat globules or fat biofilms in the boundary layer that forms at the interface between the milk and the crystal that serves both as radiation waveguide and sensing element. Since manipulations such as homogenisation are not permissible for in-line analysis, these results show that the potential of mid-infrared attenuated total reflectance spectroscopy for in-line milk analysis is indeed quite limited.
机译:有关牛奶成分的实时信息对于管理挤奶过程非常有用。依赖分子振动基本模式的中红外光谱法通常用于牛奶的离线分析,本研究的目的是研究全反射衰减的中红外光谱法对牛奶的实时分析的潜力。挤奶线中的牛奶。这项研究是在18个月的时间内对70头奶牛的189个样本进行的。使用主成分分析,小波和神经网络来开发各种预测蛋白质和脂肪浓度的模型。尽管获得了一些季节性子数据集的合理蛋白质模型(测定误差<〜0.15%蛋白质),但是该模型缺乏鲁棒性,因此无法开发出适合所有数据的模型。脂肪浓度的测定被证明更加成问题,并且无论所分析的子数据集或所使用的光谱间隔如何,测定误差都仍然过大。这些不良结果可以通过中红外辐射的有限穿透深度来解释,该穿透深度使光谱对在牛奶和晶体之间的界面处形成的边界层中脂肪球或脂肪生物膜的存在非常敏感。既用作辐射波导又用作传感元件。由于在线分析中不允许进行诸如均质化等操作,因此这些结果表明,中红外衰减全反射光谱法在在线牛奶分析中的潜力确实非常有限。

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