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首页> 外文期刊>Analytical and bioanalytical chemistry >Determination of cadmium in grains by isotope dilution ICP-MS and coprecipitation using sample constituents as carrier precipitants
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Determination of cadmium in grains by isotope dilution ICP-MS and coprecipitation using sample constituents as carrier precipitants

机译:通过同位素稀释ICP-MS和样品组分作为载体沉淀剂的共沉淀法测定谷物中的镉

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摘要

A coprecipitation method using sample constituents as carrier precipitants was developed that can remove molybdenum, which interferes with the determination of cadmium in grain samples via isotope dilution inductively coupled plasma mass spectrometry (ID-ICPMS). Samples were digested with HNO3, HF, and HClO4, and then purified 6 M sodium hydroxide solution was added to generate colloidal hydrolysis compounds, mainly magnesium hydroxide. Cadmium can be effectively separated from molybdenum because the cadmium forms hydroxides and adsorbs onto and/or is occluded in the colloid, while the molybdenum does not form hydroxides or adsorb onto the hydrolysis colloid. The colloid was separated by centrifugation and then dissolved with 0.2 M HNO3 solution to recover the cadmium. The recovery of Cd achieved using the coprecipitation was > 97%, and the removal efficiency of Mo was approximately 99.9%. An extremely low procedural blank (below the detection limit of ICPMS) was achieved by purifying the 6 M sodium hydroxide solution via Mg coprecipitation using Mg(NO3)(2) solution. The proposed method was applied to two certified reference materials (NIST SRM 1567a wheat flour and SRM 1568a rice flour) and CCQM-P64 soybean powder. Good analytical results with small uncertainties were obtained for all samples. This method is simple and reliable for the determination of Cd in grain samples by ID-ICPMS.
机译:开发了一种使用样品成分作为载体沉淀剂的共沉淀方法,该方法可以去除钼,这会通过同位素稀释电感耦合等离子体质谱法(ID-ICPMS)干扰谷物样品中镉的测定。用HNO3,HF和HClO4消解样品,然后加入纯化的6 M氢氧化钠溶液以生成胶体水解化合物,主要是氢氧化镁。镉可以有效地与钼分离,因为镉形成氢氧化物并吸附到胶体上和/或被吸留,而钼不形成氢氧化物或吸附到水解胶体上。通过离心分离胶体,然后用0.2 M HNO3溶液溶解以回收镉。使用共沉淀实现的Cd回收率> 97%,Mo的去除效率约为99.9%。通过使用Mg(NO3)(2)溶液通过Mg共沉淀纯化6 M氢氧化钠溶液,可以实现极低的程序空白(低于ICPMS的检测限)。将该方法应用于两种认证参考材料(NIST SRM 1567a小麦粉和SRM 1568a大米粉)和CCQM-P64大豆粉。所有样品均获得了良好的分析结果,不确定性很小。该方法简便,可靠,通过ID-ICPMS测定谷物样品中的镉。

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