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Sequential voltammetric determination of trace metals in meals

机译:连续伏安法测定膳食中的痕量金属

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An analytical procedure for the sequential determination of Zn(II), Cr(VI), Cu(II), Sb(III), Sn(II), Pb(II) by square wave anodic stripping voltammetry (SWASV) and Fe(III), Mn(II), Mo(VI) by square wave voltammetry (SWV) in matrices involved in foods and food chain as wholemeal, wheat and maize meal is described. The digestion of each matrix was carried out using a concentrated HCl-HNO3-H2SO4 attack mixture, employing dibasic ammonium citrate buffer solution (pH 6.9 and 8.7) as supporting electrolytes. The analytical procedure was verified by the analysis of the standard reference materials Wholemeal BCR-CRM 189, Wheat Flour NIST-SRM 1567a and Rice Flour NIST-SRM 1568a. For all the elements in the certified matrix, the precision as repeatability, expressed as relative standard deviation (s(r)) was of the order of 3-5%, the accuracy, expressed as relative error (e) was generally of the order of 3-6%. In presence of reciprocal interference, the standard addition method considerably improved the resolution of the voltammetric technique. Finally, the analytical procedure was transferred and applied to commercial meals sampled on market. A critical comparison with atomic absorption spectroscopic measurements is also discussed. (c) 2006 Elsevier B.V. All rights reserved.
机译:方波阳极溶出伏安法(SWASV)和Fe(III)依次测定Zn(II),Cr(VI),Cu(II),Sb(III),Sn(II),Pb(II)的分析程序),方波伏安法(SWV)对涉及食品和食物链的基质(例如全麦,小麦和玉米粉)中的Mn(II),Mo(VI)进行了描述。使用浓盐酸-HNO3-H2SO4侵蚀混合物,以柠檬酸二铵铵缓冲溶液(pH 6.9和8.7)作为支持电解质,对每种基质进行消化。通过分析标准参考材料全麦BCR-CRM 189,小麦粉NIST-SRM 1567a和米粉NIST-SRM 1568a验证了该分析方法。对于认证矩阵中的所有元素,以相对标准偏差(s(r))表示的重复性精度约为3-5%,以相对误差(e)表示的精度通常约为5%。 3-6%。在存在相互干扰的情况下,标准添加方法极大地提高了伏安技术的分辨率。最终,分析程序被转移并应用于在市场上采样的商业食品。还讨论了与原子吸收光谱测量的关键比较。 (c)2006 Elsevier B.V.保留所有权利。

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