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The measurement of silver in road salt by electrothermal atomic absorption spectrometry

机译:电热原子吸收光谱法测定路盐中的银

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摘要

The strong complexes formed between silver (Ag+) and chloride (Cl-) may give rise to salt deposits from ancient seas containing elevated Ag concentrations. Since salt from these deposits is frequently used for road de-icing in the northern United States, elevated Ag concentrations in salt represent a potential source of Ag to the areas in which de-icing is performed. In this paper we describe the methodology used to determine the concentration of Ag in salt stored for road application in Madison, Wisconsin, USA. Road salt was dissolved in ultrapure water and analyzed by electrothermal atomic absorption spectrometry. A combination of low Ag concentrations and interferents in the matrix led to pre-concentration and matrix removal via co-precipitation with cobalt pyrrolidinedithiocarbamate and subsequent re-solubilization. Concentrations of Ag in road salt of 102-141 pg g(-1) were determined. Method recovery spikes and blanks indicated that neither analytical interferences nor contamination during sample preparation were significant. Calculations based on these concentrations have led to two important conclusions: (1) based on average ocean salinity values, Ag concentrations in open ocean water and in salt deposits are similar; and (2) compared to other sources, road salt is unlikely to represent an important source of Ag to areas in which salt is used for de-icing. [References: 17]
机译:银(Ag +)和氯化物(Cl-)之间形成的强络合物可能会导致古银盐含量高的盐沉积。由于来自这些沉积物的盐在美国北部经常用于道路除冰,因此盐中Ag浓度的升高代表了进行除冰区域的潜在的Ag来源。在本文中,我们描述了用于确定美国威斯康星州麦迪逊市道路应用中储存的盐中的Ag浓度的方法。将路盐溶解在超纯水中,并通过电热原子吸收光谱法进行分析。低银浓度和基质中的干扰物的结合导致预浓缩和基质与吡咯烷二硫代氨基甲酸钴共沉淀并随后再溶解,从而去除了基质。确定了102-141 pg g(-1)的路盐中Ag的浓度。方法回收的尖峰和空白表明样品制备过程中的分析干扰和污染均不显着。基于这些浓度的计算得出两个重要的结论:(1)基于平均海洋盐度值,露天海水和盐矿中的Ag浓度相似; (2)与其他来源相比,路盐不太可能代表使用盐除冰的地区的重要Ag来源。 [参考:17]

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