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Determination of sodium and calcium in powder milk using digital image-based flame emission spectrometry

机译:基于数字图像的火焰发射光谱法测定奶粉中的钠和钙

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摘要

This paper proposes combining Multiple Linear Regression (MLR) and Digital Image-Based Flame Emission Spectrometry (DIB-FES) to overcome the inherent spectral interference in Flame Emission Spectrometry (FES) when sodium and calcium are present in the same sample. Metals in the air-butane flame emit radiation which is revealed in the digital images captured by a webcam (detector), on the basis of the Red-Green-Blue (RGB) color system. MLR calibration models for sodium and calcium were both developed and validated. In order to illustrate the feasibility of this proposal, the validated models were applied for the determination of sodium and calcium in powder milk. The results were compared with those obtained using Flame Atomic Absorption Spectrometry (FAAS) as the reference method. No statistically significant difference was observed between the results for both metals by using the paired f-test at a 95% confidence level. The accuracy of the models was also attested to by their recovery factors which fell between 97 and 103% for both metals. The results confirm the models' discriminating power in isolating each analyte's information from a single digital image, even with spectral interference.
机译:本文提出将多元线性回归(MLR)与基于数字图像的火焰发射光谱(DIB-FES)结合使用,以克服当同一样品中存在钠和钙时火焰发射光谱(FES)固有的光谱干扰。空气-丁烷火焰中的金属发出辐射,该辐射在基于红绿蓝(RGB)颜色系统的网络摄像头(检测器)捕获的数字图像中显示出来。钠和钙的MLR校准模型均已开发和验证。为了说明该建议的可行性,将经过验证的模型用于测定奶粉中的钠和钙。将结果与使用火焰原子吸收光谱法(FAAS)作为参考方法获得的结果进行比较。通过在95%置信水平下使用配对f检验,两种金属的结果之间没有观察到统计学上的显着差异。两种金属的回收率均在97%至103%之间,证明了模型的准确性。结果证实了该模型在从单个数字图像中分离每种分析物信息的能力,即使存在光谱干扰也是如此。

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