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Determination of trace cadmium in steel by inductively coupled plasma-atomic emission spectrometry after removal of iron matrix with an adsorption column

机译:吸附柱去除铁基质后电感耦合等离子体原子发射光谱法测定钢中痕量镉

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An inductively coupled plasma-atomic emission spectrometry method is established for the determination of trace cadmium in steel. The steel sample was dissolved with hydrochloric acid, then the sample solution was passed through a mini-column packed with anion exchange resin DOWEX 1 ?— 8-200. Cadmium was selectively adsorbed on the column, while iron was passed through. The analyte Cd was then eluted with 1.6 mol La?’1 nitric acid and collected in a volumetric flask, thus Cd was enriched and effectively separated from the matrix iron. Separation conditions were optimized via experimental determination of distribution coefficient for Cd and Fe, respectively. Detection limit of Cd was 0.12 ??g ga?’1. Recovery was in the range of 90% to 98%. The relative standard deviation was in the range 5.8%a€“7.3% (n = 7). The proposed method is applied to the determination of trace cadmium in the steel industry.
机译:建立了电感耦合等离子体原子发射光谱法测定钢中痕量镉的方法。将钢样品用盐酸溶解,然后使样品溶液通过装有阴离子交换树脂DOWEX 1-8-200的微型柱。在铁通过的同时,镉被选择性地吸附在柱上。然后用1.6 mol La?1硝酸洗脱分析物Cd,并收集在容量瓶中,从而使Cd富集并有效地与基质铁分离。通过实验确定Cd和Fe的分配系数来优化分离条件。 Cd的检出限为0.12 g·g·ga-1。回收率在90%至98%的范围内。相对标准偏差在5.8%至7.3%的范围内(n = 7)。该方法用于钢铁行业中痕量镉的测定。

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