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Tin Content Determination in Canned Fruits and Vegetables by Hydride Generation Inductively Coupled Plasma Optical Emission Spectrometry

机译:氢化物发生-电感耦合等离子体发射光谱法测定水果和蔬菜罐头中的锡含量

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摘要

Tin content in samples of canned fruits and vegetables was determined by hydride generation inductively coupled plasma atomic emission spectrometry (HG-ICP-OES), and it was compared with results obtained by standard method of flame atomic absorption spectrometry (AAS). Selected tin emission lines intensity was measured in prepared samples after addition of tartaric acid and followed by hydride generation with sodium borohydride solution. The most favorable line at 189.991 nm showed the best detection limit (1.9 μg L−1) and limit of quantification (6.4 μg kg−1). Good linearity and sensitivity were established from time resolved analysis and calibration tests. Analytical accuracy of 98–102% was obtained by recovery study of spiked samples. Method of standard addition was applied for tin determination in samples from fully protected tinplate. Tin presence at low-concentration range was successfully determined. It was shown that tenth times less concentrations of Sn were present in protected cans than in nonprotected or partially protected tinplate.
机译:通过氢化物发生电感耦合等离子体原子发射光谱法(HG-ICP-OES)测定水果和蔬菜罐头中的锡含量,并将其与标准火焰原子吸收光谱法(AAS)获得的结果进行比较。加入酒石酸后,在制备的样品中测量选定的锡发射线强度,然后用硼氢化钠溶液生成氢化物。最有利的谱线在189.991 nm处显示出最佳的检出限(1.9μgL -1 )和定量限(6.4μgkg -1 )。通过时间分辨分析和校准测试建立了良好的线性和灵敏度。通过加标样品的回收率研究获得了98–102%的分析准确性。采用标准添加法测定完全受保护的马口铁中样品中的锡。已成功确定了低浓度范围内锡的存在。结果表明,受保护的罐中锡的含量是未受保护的或部分受保护的马口铁中锡含量的十分之一。

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