首页> 外文期刊>Journal of analytical chemistry >Determination of Rare-Earth and Accompanying Elements in Niobium-Rare-Earth Ores by Inductively Coupled Plasma Atomic Emission Spectrometry Using Model Calibration and a Mathematical Approach for Resolving Spectral Interferences
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Determination of Rare-Earth and Accompanying Elements in Niobium-Rare-Earth Ores by Inductively Coupled Plasma Atomic Emission Spectrometry Using Model Calibration and a Mathematical Approach for Resolving Spectral Interferences

机译:使用模型校准和分辨谱干扰的数学方法,电感耦合等离子体原子发射光谱法测定铌稀土矿石中稀土和伴随元素的测定

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摘要

A procedure is developed for the direct determination of all rare-earth and a number of accompanying elements in niobium-rare-earth ores by inductively coupled plasma atomic emission spectrometry after sample decomposition by fusion and further disolution. Because of the complex elemental composition of the samples, numerous mutual overlapping of spectral lines of matrix and rare-earth elements were observed, which required corrections in the calculations of concentrations. The procedure is based on a calibration, modeling spectral and matrix interferences; compilation of the set (mathematical matrix) of mutual interference coefficients; and use of the matrix obtained and the results of sample measurement for the computation of element concentrations. A precise method is used to solve a system of linear equations; it implies the resolution of interferences for all lines. Software utilizing a regularization algorithm ensuring stable solutions of the system of linear equations and also a method of evaluation of the uncertainty of the results of measurements are developed. The method ensures correct results and is rather stable to changes in the composition of the analyzed sample. This was confirmed by the results of analyses of certified reference materials (CRMs) of the composition of rare-earth ores of different origin.
机译:通过融合和进一步造出在样品分解之后通过电感耦合等离子体原子发射光谱法直接测定铌稀土矿物中所有稀土和许多伴随元素的过程。由于样品的复合元素组成,观察到基质和稀土元素的光谱线的许多相互重叠,这在浓度计算中需要校正。该过程基于校准,建模光谱和矩阵干扰;相互干扰系数的集合(数学矩阵)编译;获得基质的使用和用于计算元素浓度的样品测量结果。一种精确的方法用于解决线性方程的系统;它意味着对所有线条的干扰的分辨率。利用正则化算法的软件,确保线性方程系统的稳定解决方案以及评估测量结果的不确定性的评估方法。该方法可确保正确的结果,并且对分析的样品的组成变化相当稳定。通过不同来源的稀土矿石组成的认证参考材料(CRM)的分析结果证实了这一点。

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