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首页> 外文期刊>Analytical Letters >DETERMINATION OF IRON, COPPER, ZINC, LEAD, NICKEL AND CADMIUM IN COSMETIC MATRICES BY FLAME ATOMIC ABSORPTION SPECTROSCOPY
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DETERMINATION OF IRON, COPPER, ZINC, LEAD, NICKEL AND CADMIUM IN COSMETIC MATRICES BY FLAME ATOMIC ABSORPTION SPECTROSCOPY

机译:火焰原子吸收光谱法测定化妆品中的铁,铜,锌,铅,镍和镉。

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摘要

Metals are commonly used in cosmetic products for blocking ultraviolet light or coloring pigments; however, some metals exceed specific concentrations and can cause serious safety issues such as skin troubles and allergies. It is, therefore, important to measure the exact amount of metal in cosmetic products. However, the exact concentrations of metals in cosmetics that contain many organic and inorganic materials like oils, polymers, waxes, polyols, surfactants, and metallic powders are difficult to analyze due to the matrix effect. In this study, we developed and optimized a method to characterize six different metals (Iron, Copper, Zinc, Lead, Nickel and Cadmium) in cosmetics by using Flame Atomic Absorption Spectroscopy (FAAS). Commercial products in liquid and powder phase were prepared for analysis and spiking solutions were added to the analyte. The method was developed by optimizing acid for decomposition, acid ratio, and sample weight. The recoveries for accuracy test ranged from 92-105% and the linearity correlation coefficients were no less than 0.99. The relative standard deviations (% RSD) for repeatability were between 0.5-2.0%. In addition, robustness and ruggedness test results showed consistent quality of data under different conditions. Consequently, the proposed method is a rapid and simple protocol to determine metals in liquid and powder type of cosmetics with a high confidence level.
机译:金属常用于化妆品中,以阻挡紫外线或使颜料着色。但是,某些金属含量超过特定浓度,会引起严重的安全问题,例如皮肤问题和过敏。因此,重要的是测量化妆品中金属的确切含量。但是,由于基质效应,难以分析化妆品中金属的确切浓度,这些化妆品中包含许多有机和无机材料,如油,聚合物,蜡,多元醇,表面活性剂和金属粉末。在这项研究中,我们开发并优化了一种使用火焰原子吸收光谱法(FAAS)表征化妆品中六种不同金属(铁,铜,锌,铅,镍和镉)的方法。准备液相和粉末相的商品以进行分析,并将加标溶液添加到分析物中。通过优化酸的分解,酸比和样品重量开发了该方法。精度测试的回收率在92%到95%之间,线性相关系数不小于0.99。重复性的相对标准偏差(%RSD)在0.5-2.0%之间。此外,鲁棒性和耐用性测试结果表明在不同条件下数据的质量始终如一。因此,所提出的方法是一种快速,简单的方案,可以高置信度确定液体和粉末型化妆品中的金属。

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