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一种绿色分析方法,使用超声样品制备,通过火焰原子吸收光谱法在可溶固样中流动注射测定铁、锰和锌。

A green analytical method using ultrasound in sample preparation for the flow injection determination of iron, manganese, and zinc in soluble solid samples by flame atomic absorption spectrometry.

机构信息

Department of Analytical Chemistry, Nutrition and Bromatology, Faculty of Chemistry, University of Santiago de Compostela, Santiago de Compostela 15782, Spain.

出版信息

J Anal Methods Chem. 2012;2012:298217. doi: 10.1155/2012/298217. Epub 2012 Mar 22.

Abstract

A simple and rapid analytical method was developed for the determination of iron, manganese, and zinc in soluble solid samples. The method is based on continuous ultrasonic water dissolution of the sample (5-30 mg) at room temperature followed by flow injection flame atomic absorption spectrometric determination. A good precision of the whole procedure (1.2-4.6%) and a sample throughput of ca. 25 samples h(-1) were obtained. The proposed green analytical method has been successfully applied for the determination of iron, manganese, and zinc in soluble solid food samples (soluble cocoa and soluble coffee) and pharmaceutical preparations (multivitamin tablets). The ranges of concentrations found were 21.4-25.61 μg g(-1) for iron, 5.74-18.30 μg g(-1) for manganese, and 33.27-57.90 μg g(-1) for zinc in soluble solid food samples and 3.75-9.90 μg g(-1) for iron, 0.47-5.05 μg g(-1) for manganese, and 1.55-15.12 μg g(-1) for zinc in multivitamin tablets. The accuracy of the proposed method was established by a comparison with the conventional wet acid digestion method using a paired t-test, indicating the absence of systematic errors.

摘要

建立了一种用于测定可溶固样中铁、锰和锌的简单、快速分析方法。该方法基于在室温下连续超声水溶解样品(5-30mg),然后进行流动注射火焰原子吸收光谱法测定。整个过程的精密度良好(1.2-4.6%),样品通量约为 25 个/h。该绿色分析方法已成功应用于可溶固形食品样品(可溶可可和可溶咖啡)和药物制剂(多种维生素片)中铁、锰和锌的测定。在可溶固形食品样品中,铁的浓度范围为 21.4-25.61μg/g,锰的浓度范围为 5.74-18.30μg/g,锌的浓度范围为 33.27-57.90μg/g;在多种维生素片中,铁的浓度范围为 3.75-9.90μg/g,锰的浓度范围为 0.47-5.05μg/g,锌的浓度范围为 1.55-15.12μg/g。通过与传统的湿法酸消解法进行比较,用配对 t 检验验证了该方法的准确性,表明不存在系统误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7362/3335327/28e506d0a057/JAMC2012-298217.001.jpg

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