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A magnesium hydroxide preconcentration/matrix reduction method for the analysis of rare earth elements in water samples using laser ablation inductively coupled plasma mass spectrometry

机译:氢氧化镁预浓缩/基体还原法用于激光消融电感耦合等离子体质谱法分析水样中的稀土元素

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摘要

This paper describes a simple method for simultaneous preconcentration and matrix reduction during the analysis of rare earth elements (REEs) in water samples through laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). From a systematic investigation of the co-precipitation of REEs using magnesium hydroxide, we optimized the effects of several parameters - the pH, the amount of magnesium, the shaking time, the efficiency of Ba removal, and the sample matrix - to ensure quantitative recoveries. We employed repetitive laser ablation to remove the dried-droplet samples from the filter medium and introduce them into the ICP-MS system for determinations of REEs. The enrichment factors ranged from 8 to 88. The detection limit, at an enrichment factor of 32, ranged from 0.03 to 0.20 pg mL~(-1). The relative standard deviations for the determination of REEs at a concentration of 1 ng mL ~(-1) when processing 40 mL sample solution were 2.0-4.8%. We applied this method to the satisfactory determination of REEs in lake water and synthetic seawater samples.
机译:本文介绍了一种通过激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)在分析水样中稀土元素(REE)的同时进行预富集和基质还原的简单方法。通过对使用氢氧化镁共沉淀稀土元素的系统研究,我们优化了多个参数的影响-pH,镁含量,振荡时间,Ba去除效率和样品基质-以确保定量回收。我们采用重复激光烧蚀从过滤介质中去除干燥液滴样品,并将其引入ICP-MS系统中以确定REE。富集因子范围为8到88。富集因子为32时,检测极限范围为0.03到0.20 pg mL〜(-1)。在处理40 mL样品溶液时,在1 ng mL〜(-1)浓度下测定REE的相对标准偏差为2.0-4.8%。我们将该方法用于令人满意的测定湖水和合成海水样品中稀土元素的方法。

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