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Application of Visible/Near-Infrared Spectroscopy in the Prediction of Azodicarbonamide in Wheat Flour

机译:可见/近红外光谱在小麦粉中偶氮二甲酰胺预测中的应用

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摘要

Azodicarbonamide is wildly used in flour industry as a flour gluten fortifier in many countries, but it was proved by some researches to be dangerous or unhealthy for people and not suitable to be added in flour. Applying a rapid, convenient, and noninvasive technique in food analytical procedure for the safety inspection has become an urgent need. This paper used Vis/NIR reflectance spectroscopy analysis technology, which is based on the physical property analysis to predict the concentration of azodicarbonamide in flour. Spectral data in range from 400 to 2498 nm were obtained by scanning 101 samples which were prepared using the stepwise dilution method. Furthermore, the combination of leave-one-out cross-validation and Mahalanobis distance method was used to eliminate abnormal spectral data, and correlation coefficient method was used to choose characteristic wavebands. Partial least squares, back propagation neural network, and radial basis function were used to establish prediction model separately. By comparing the prediction results between 3 models, the radial basis function model has the best prediction results whose correlation coefficients (R), root mean square error of prediction (RMSEP), and ratio of performance to deviation (RPD) reached 0.99996, 0.5467, and 116.5858, respectively.
机译:偶氮二酰胺在面粉工业中广泛用作面粉面筋强化剂,但一些研究证明,它对人是危险或不健康的,因此不适合在面粉中添加。在食品分析过程中应用快速,便捷,无创的技术进行安全检查已成为当务之急。本文使用Vis / NIR反射光谱分析技术,该技术基于物理性质分析来预测面粉中偶氮二甲酰胺的浓度。通过扫描使用逐步稀释法制备的101个样品,可获得400至2498 nm范围内的光谱数据。此外,留一法交叉验证与马氏距离法相结合用于消除异常光谱数据,相关系数法用于选择特征波段。使用偏最小二乘,反向传播神经网络和径向基函数分别建立预测模型。通过比较3个模型的预测结果,径向基函数模型具有最佳的预测结果,其相关系数(R),预测的均方根误差(RMSEP)和性能偏差比(RPD)分别为0.99996、0.5467,和116.5858。

著录项

  • 来源
    《Journal of Food Science》 |2017年第12期|2516-2525|共10页
  • 作者单位

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Key Laboratory of Electronics Engineering, College of Heilongjiang Province, Heilongjiang Univ., Harbin 150080, China;

    Quality & Safety Inst. of Agricultural Products, Heilongjiang Academy of Agricultural Sciences, Harbin, China;

    Quality & Safety Inst. of Agricultural Products, Heilongjiang Academy of Agricultural Sciences, Harbin, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    azodicarbonamide; flour; near-infrared reflectance spectroscopy; noninvasive detection; prediction model;

    机译:偶氮二甲酰胺面粉;近红外反射光谱;无创检测;预测模型;

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