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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Enhanced Raman spectroscopic discrimination of the geographical origins of rice samples via transmission spectral collection through packed grains
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Enhanced Raman spectroscopic discrimination of the geographical origins of rice samples via transmission spectral collection through packed grains

机译:通过装箱谷物的透射光谱收集,增强大米样品地理起源的拉曼光谱鉴别

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摘要

Transmission Raman spectroscopy has been effectively utilized for the discrimination of rice samples according to geographical origin. Since the constituents of rice are heterogeneously distributed and/or localized in a grain, the collection of Raman spectra providing a better compositional representation of packed rice grains is an essential requirement for accurate analysis. The optimal packing thickness yielding the most reproducible transmission spectra was initially determined. Internal propagation of radiation was more sensitively influenced by random packing when a packing was thinner; while, a thicker packing largely attenuated transmitting Raman signal and eventually degraded the signal-to-noise ratio of collected spectra. At the determined packing thickness, transmission spectra of all rice samples were collected, and discrimination into two different geographical origins was performed using principal component analysis (PCA) combined with linear discriminant analysis (LDA). For comparison, back-scattering Raman spectra of the same samples were also collected. The discrimination accuracy was improved when Raman spectra collected directly through the packed rice grains were used. Since the constituents of rice were not homogeneously distributed in a grain as confirmed using Raman microscopy, the transmission measurement enabling transversal sampling across a packing of rice grains was better for compositional representation of individual grains in the packing and able to recognize minute spectral differences between two groups, ultimately leading to more accurate discrimination of geographical origin.
机译:透射拉曼光谱已被有效地用于根据地理来源区分大米样品。由于大米的成分在谷物中是异质分布和/或局部分布的,因此拉曼光谱的收集提供了更好的包装大米粒的组成表示是准确分析的基本要求。最初确定产生最可再现的透射光谱的最佳填充厚度。当填充物较薄时,辐射的内部传播更易受到随机填充的影响。同时,较厚的堆积大大衰减了透射拉曼信号,并最终降低了所收集光谱的信噪比。在确定的包装厚度下,收集所有大米样品的透射光谱,并使用主成分分析(PCA)与线性判别分析(LDA)进行区分为两个不同的地理起源。为了进行比较,还收集了相同样品的反向散射拉曼光谱。使用直接通过包装的米粒收集的拉曼光谱可提高判别精度。由于用拉曼显微镜证实大米的成分在谷物中分布不均匀,因此透射测量能够对大米颗粒的包装进行横向采样,从而更好地代表了包装中单个谷物的成分,并且能够识别两种谷物之间的微小光谱差异群体,最终导致对地理起源的更准确的区分。

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