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Determination of Zinc in Environmental Samples by Solid Phase Spectrophotometry: Optimization and Validation Study

机译:固相分光光度法测定环境样品中的锌:优化和验证研究

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A simple and specific solid-phase spectrophotometric (SPS) determination of zinc in μg dm-3 level has been developed based on the reaction of Zn(II) with 4-(2-pyridylazo)resorcinol (PAR) in the presence of potassium iodide; the product was then fixed on an anionic exchanger. The absorbance of the gel, packed in a 1 mm cell, is measured directly. PAR and KI concentrations were optimized simultaneously using response surface methodology (RSM) from sequential experimental Doehlert designs. The advantages of this methodology are discussed, as opposed to univariate optimization, which is also used. The method was validated by obtaining the performance characteristics: linearity, detection and quantification limits, precision, robustness and selectivity, using suitable chemometric techniques; the trueness was confirmed on environmental samples (water and milk).
机译:基于Zn(II)与4-(2-吡啶基偶氮)间苯二酚(PAR)在碘化钾存在下的反应,开发了一种简单且特定的固相分光光度法(SPS)测定μgdm-3级中的锌;然后将产物固定在阴离子交换剂上。直接测量装在1毫米样品池中的凝胶的吸光度。使用顺序实验Doehlert设计中的响应面方法(RSM)同时优化PAR和KI浓度。讨论了与单变量优化相对的这种方法的优点,后者也被使用。通过使用适当的化学计量技术获得以下性能特征来验证该方法:线性,检测和定量限,精密度,鲁棒性和选择性;真实性已在环境样品(水和牛奶)上得到证实。

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