Analytical Control over the Preparation of Pure Antimony

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Inorganic Materials Pub Date : 2024-03-19 DOI:10.1134/S0020168523120099
A. R. Tsygankova, T. Ya. Guselnikova, N. I. Petrova, F. V. Yatsunov
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Abstract

A multielement inductively coupled plasma atomic emission spectrometry (ICP-AES) technique has been proposed for high-speed monitoring of the preparation of pure antimony, and analytical lines of analytes with the weakest spectral effects have been chosen. We have studied the effect of matrix component concentration (5 to 40 g/L) on the analytical signals of impurity elements. Changes in excitation conditions in the plasma at a varied antimony concentration in solution and varied ICP power have been assessed using the ICP robustness. The robustness was evaluated from the intensity ratio of the magnesium ionic and atomic lines. The presence of 40 g/L of antimony in solution has been shown to reduce the ICP robustness by up to 5%. The adequacy of the proposed technique has been confirmed by the standard addition method and comparison with results obtained by an independent method. The proposed technique for analysis of antimony allows one to determine 56 impurity elements with detection limits from n × 10–7 to n × 10–4 wt %.

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纯锑制备的分析控制
摘要 提出了一种多元素电感耦合等离子体原子发射光谱(ICP-AES)技术,用于高速监测纯锑的制备过程,并选择了光谱效应最弱的分析物分析线。我们研究了基体成分浓度(5 至 40 克/升)对杂质元素分析信号的影响。在溶液中锑浓度变化和 ICP 功率变化的情况下,我们使用 ICP 鲁棒性评估了等离子体中激发条件的变化。根据镁离子线和原子线的强度比来评估稳健性。结果表明,溶液中含有 40 克/升的锑时,ICP 的稳健性最多会降低 5%。通过标准添加法以及与一种独立方法得出的结果进行比较,确认了所建议技术的适当性。所提出的锑分析技术可测定 56 种杂质元素,检测限为 n × 10-7 至 n × 10-4 wt %。
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来源期刊
Inorganic Materials
Inorganic Materials 工程技术-材料科学:综合
CiteScore
1.40
自引率
25.00%
发文量
80
审稿时长
3-6 weeks
期刊介绍: Inorganic Materials is a journal that publishes reviews and original articles devoted to chemistry, physics, and applications of various inorganic materials including high-purity substances and materials. The journal discusses phase equilibria, including P–T–X diagrams, and the fundamentals of inorganic materials science, which determines preparatory conditions for compounds of various compositions with specified deviations from stoichiometry. Inorganic Materials is a multidisciplinary journal covering all classes of inorganic materials. The journal welcomes manuscripts from all countries in the English or Russian language.
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