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首页> 外文期刊>Journal of Food Composition and Analysis >Simultaneous determination of Fe and Ni in guarana (Paullinia cupana Kunth) by HR-CS GF AAS: Comparison of direct solid analysis and wet acid digestion procedures
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Simultaneous determination of Fe and Ni in guarana (Paullinia cupana Kunth) by HR-CS GF AAS: Comparison of direct solid analysis and wet acid digestion procedures

机译:HR-CS GF AAS同时测定瓜兰(Paullinia Cupana Kunth)中的Fe和Ni:直接固体分析和湿酸消化手术的比较

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Direct solid sampling method was compared with the conventional wet acid digestion method to simultaneously assay iron and nickel in guarana by high-resolution continuum source graphite furnace atomic absorption spectrometry. Measurements were done with the secondary lines of Fe and Ni. Four digestion procedures using mixtures of HNO3 and H2O2 (procedure A), HNO3 and HCl (procedure B), HNO3, HCl and H2O2 (procedure C) and HNO3, H2SO4 and H2O2 (procedure D) were evaluated. All tested procedures provided quantitative recoveries for Ni, whereas a good recovery for Fe was obtained only with procedure D. Procedure D was chosen for the digestion of all guarana samples. The limit of detection for the direct solid sampling method was 1.004 mu g g(-1) for Fe and 0.022 mu g g(-1) for Ni, and the precision ranged from 3.5-20.0% and 2.8-8.0% for Fe and Ni, respectively. Method accuracy was evaluated by statistical comparison between analyte concentrations, obtained by measurements in the solid samples by the proposed method and after the digestion of the samples by procedure D. The validation of the analytical results obtained for the solid and the digested sample was performed by Energy Dispersive X-Ray Fluorescence.
机译:将直接固体取样方法与常规的湿酸消化方法进行比较,通过高分辨率连续源石墨炉原子吸收光谱法同时测定瓜拉纳中的铁和镍。测量用Fe和Ni的二级线进行。使用HNO3和H 2 O 2混合物(步骤a),HNO 3和HCl(步骤B),HNO 3,HCl和H 2 O 2(方法C)和HNO 3,H 2 SO 4和H 2 O 2(步骤D)的四种消化方法。所有测试程序都提供了Ni的定量回收率,而仅使用程序D获得良好的Fe恢复。程序D被选择用于消化所有瓜兰样本。用于直接固体取样方法的检测极限为Ni和0.022μg(-1)的1.004μg(-1),PE和Ni的精度为3.5-20.0%和2.8-8.0%,分别。通过通过所提出的方法和通过方法D消化样品的固体样品在固体样品中测量获得的分析物浓度之间的统计比较来评估方法精度。通过方法D.对固体和消化样品获得的分析结果进行验证能量分散X射线荧光。

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