首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Direct determination of copper and zinc in alcoholic and non-alcoholic drinks using high-resolution continuum source flame atomic absorption spectrometry and internal standardization
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Direct determination of copper and zinc in alcoholic and non-alcoholic drinks using high-resolution continuum source flame atomic absorption spectrometry and internal standardization

机译:使用高分辨率连续源火焰原子吸收光谱和内标测定酒精和非酒精饮料中铜和锌的直接测定

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摘要

A simple, rapid, direct and multi-element method based on high-resolution continuum source flame atomic absorption spectrometry (HR-CS FAAS) was developed to analyse a large variety of beverages with successful results. The use of the internal standard (IS) calibration method was explored to carry out the direct analysis of drinks with different sugar and/or alcohol content using only one calibration curve. The main absorption lines for the analytes (Cu, Zn and Pb) and the possible ISs (Ag, Co, Ni and Bi) were chosen to perform the analysis. In addition, the possibility of introducing the sample in the spectrometer in a continuous or discontinuous mode was investigated. The limits of quantification (LOQs) obtained using Ag as IS and the continuous sample introduction mode were 0.040 mg L-1 for Zn, 0.016 mg L-1 for Cu, and 0.099 mg L-1 for Pb. In addition, the precision, expressed as the relative standard deviation (RSD), was lower than 4% for the three elements. The developed IS method was applied to analyse different commercial beverages: an apple juice, a ready-to-drink beverage containing fruit juices, an isotonic drink, a lemon and lime flavoured soft drink, a beer, a wine, a gin, a whisky, a rum, and an apple liqueur. For comparison, these beverages were also analysed using a conventional external calibration procedure. The Cu concentration was lower than 1.28 mg L-1 and 0.15 mg L-1 in alcoholic and non-alcoholic drinks, respectively, and Zn concentration was lower than 0.37 mg L-1 in alcoholic and 12.3 mg L-1 in non-alcoholic drinks. The Pb concentration in all the analysed samples was below the limit of detection (LOD). The recoveries in the validation studies were within 92-109% for Cu, 93-111% for Zn and 94-110% for Pb.
机译:开发了一种基于高分辨率连续源火焰原子吸收光谱法(HR-CS FAAS)的简单,快速,直接和多元素的方法,以分析各种各样的饮料。探讨了内标(IS)校准方法的使用,仅使用一种校准曲线进行不同糖和/或酒精含量的饮料的直接分析。选择用于分析物(Cu,Zn和Pb)的主要吸收线和可能的ISS(Ag,Co,Ni和Bi)以进行分析。另外,研究了以连续或不连续模式在光谱仪中引入样品的可能性。使用Ag获得的定量限制(LOQs)和连续样品引入模式为Zn的0.040mg L-1,Cu的0.016mg L-1,Pb为0.099mg L-1。另外,表达为相对标准偏差(RSD)的精度低于三个元件的4%。开发的方法是应用用于分析不同的商业饮料:苹果汁,含有果汁的即食饮料,等渗饮料,柠檬和石灰调味软饮料,啤酒,葡萄酒,杜松子酒,威士忌,朗姆酒和苹果利口酒。为了比较,还使用传统的外部校准程序分析这些饮料。 Cu浓度分别低于1.28mg L-1和0.15mg L-1,分别为醇和非酒精饮料,Zn浓度低于0.37mg L-1,在醇和非酒精中的12.3mg L-1饮料。所有分析样品中的PB浓度低于检测限(LOD)。验证研究中的回收率在Cu的92-109%以内,Zn的93-111%和Pb的94-110%。

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