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Second order advantage in the determination of amaranth, sunset yellow FCF and tartrazine by UV-vis and multivariate curve resolution-alternating least squares

机译:紫外-可见和多元曲线分辨率-交替最小二乘法测定of菜红,日落黄FCF和酒石黄中的二阶优势

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摘要

A direct spectrophotometric method for the determination of three artificial colors - amaranth, sunset yellow FCF and tartrazine - in beverages samples is proposed. The spectra were recorded between 359 and 600 nm. The spectra of the samples Oust filtrated), pure dyes (concentrations ranged between 0.01 and 1.8 mg L~(-1) for amaranth, 0.08 and 4.4 mg L~(-1) for sunset yellow and 0.04 and 1.8 mg L~(-1) for tartrazine) and synthetic mixtures were disposed in a column-wise augmented data matrix. This kind of data structure, analyzed by multivariate curve resolution-alternating least squares (MCR-ALS) makes it possible to exploit the so called 'second order advantage'. MCR-ALS algorithm was applied to the experimental data under the non-negativity and equality constraints. As a result, the concentration of each dye in the samples and their corresponding pure spectra were obtained.The results were validated using internal reference materials and no significant differences were found (α = 5%) between the reference values and the ones obtained with the proposed method. The second order advantage made it possible to obtain unbiased results even in the presence of interferences.
机译:提出了一种直接分光光度法测定饮料样品中三种人造色的方法:mar菜红,日落黄FCF和酒石黄。光谱记录在359和600 nm之间。滤出的样品的光谱),纯染料(a菜的浓度范围为0.01至1.8 mg L〜(-1),日落黄的浓度范围为0.08至4.4 mg L〜(-1)以及0.04和1.8 mg L〜(- 1)对于酒石黄),将合成混合物置于逐列扩充数据矩阵中。通过多变量曲线分辨率-交替最小二乘(MCR-ALS)分析这种数据结构,可以利用所谓的“二阶优势”。在非负等式约束下,将MCR-ALS算法应用于实验数据。结果获得了样品中每种染料的浓度及其相应的纯光谱。使用内部参考物质对结果进行了验证,在参考值与使用标准品获得的参考值之间未发现显着差异(α= 5%)。建议的方法。二阶优势使得即使在存在干扰的情况下也可以获得无偏结果。

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