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Identification of tartrazine and sunset yellow by fluorescence spectroscopy combined with radial basis function neural network

Identification of tartrazine and sunset yellow by fluorescence spectroscopy combined with radial basis function neural network
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摘要 The fluorescence spectra of synthetic food dyes of sunset yellow and tartrazine are analyzed. The fluorescence peak wavelengths of sunset yellow and tartrazine are 576 and 569 nm, respectively, while the fluorescence spectra widths are 480-750 and 500 750 nm induced by ultraviolet light between 310-400 nm. The fluorescence spectra of sunset yellow overlap heavily with those of tartrazine, so it is difficult to distinguish them. Based on the principle of radial basis function neural network, a neural network is obtained from the training of the 14 groups of experimental data. The results show that the species of sunset yellow and tartrazine could be recognized accurately. This method has potential applications in other synthetic food dyes detection and food safety inspection. The fluorescence spectra of synthetic food dyes of sunset yellow and tartrazine are analyzed. The fluorescence peak wavelengths of sunset yellow and tartrazine are 576 and 569 nm, respectively, while the fluorescence spectra widths are 480-750 and 500 750 nm induced by ultraviolet light between 310-400 nm. The fluorescence spectra of sunset yellow overlap heavily with those of tartrazine, so it is difficult to distinguish them. Based on the principle of radial basis function neural network, a neural network is obtained from the training of the 14 groups of experimental data. The results show that the species of sunset yellow and tartrazine could be recognized accurately. This method has potential applications in other synthetic food dyes detection and food safety inspection.
机构地区 School of Science
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2009年第11期1058-1060,共3页 中国光学快报(英文版)
关键词 Attitude control FLUORESCENCE Fluorescence spectroscopy Fluorine containing polymers Health Neural networks Radial basis function networks Synthetic foods Ultraviolet radiation Attitude control Fluorescence Fluorescence spectroscopy Fluorine containing polymers Health Neural networks Radial basis function networks Synthetic foods Ultraviolet radiation
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