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在火焰原子吸收光谱法测定食品样品中的铅、钴、铜、镉、铁和镍之前,用氢氧化锆(IV)对这些元素进行同时共沉淀。

Simultaneous coprecipitation of lead, cobalt, copper, cadmium, iron and nickel in food samples with zirconium(IV) hydroxide prior to their flame atomic absorption spectrometric determination.

作者信息

Citak Demirhan, Tuzen Mustafa, Soylak Mustafa

机构信息

Gaziosmanpaşa University, Faculty of Science and Arts, Chemistry Department, Tokat, Turkey.

出版信息

Food Chem Toxicol. 2009 Sep;47(9):2302-7. doi: 10.1016/j.fct.2009.06.021. Epub 2009 Jun 16.

Abstract

A simple and new coprecipitation procedure is developed for the determination of trace quantities of heavy metals (lead, cobalt, copper, cadmium, iron and nickel) in natural water and food samples. Analyte ions were coprecipitated by using zirconium(IV) hydroxide. The determination of metal levels was performed by flame atomic absorption spectrometry (FAAS). The influences of analytical parameters including pH, amount of zirconium(IV), sample volume, etc. were investigated on the recoveries of analyte ions. The effects of possible matrix ions were also examined. The recoveries of the analyte ions were in the range of 95-100%. Preconcentration factor was calculated as 25. The detection limits for the analyte ions based on 3 sigma (n=21) were in the range of 0.27-2.50 microgL(-1). Relative standard deviation was found to be lower than 8%. The validation of the presented coprecipitation procedure was performed by the analysis certified reference materials (GBW 07605 Tea and LGC 6010 Hard drinking water). The procedure was successfully applied to natural waters and food samples like coffee, fish, tobacco, black and green tea.

摘要

开发了一种简单新颖的共沉淀程序,用于测定天然水和食品样品中的痕量重金属(铅、钴、铜、镉、铁和镍)。分析物离子通过使用氢氧化锆(IV)进行共沉淀。金属含量的测定采用火焰原子吸收光谱法(FAAS)。研究了包括pH值、锆(IV)的用量、样品体积等分析参数对分析物离子回收率的影响。还考察了可能的基体离子的影响。分析物离子的回收率在95%-100%范围内。预富集因子计算为25。基于3σ(n=21)的分析物离子检测限在0.27-2.50 μg L-1范围内。相对标准偏差低于8%。通过分析有证标准物质(GBW 07605茶叶和LGC 6010硬饮用水)对所提出的共沉淀程序进行了验证。该程序成功应用于天然水和咖啡、鱼、烟草、红茶和绿茶等食品样品。

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