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Development of an Experimental Routine for Electrochemical and Laser-Induced Breakdown Spectroscopy Composition Measurements of SmCl_3 in LiCl-KCl Eutectic Salt Systems

机译:LiCl-KCl共晶盐体系中SmCl_3的电化学和激光诱导击穿光谱成分测量实验程序的开发

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Four different concentrations of SmCl3 in LiCl-KCl were tested using cyclic voltammetry to determine the diffusion coefficients of Sm(III) and Sm(II) found to be 8.59 x 10(-6) +/- 1.67 x 10(-6) and 8.01 x 10(-6) +/- 0.98 x 10(-6) cm(2) s(-1), respectively. Ten samples, in the form of salt ingots with SmCl3 concentrations ranging from 0.5 to 10.0 wt% were used for the creation of three laser-induced breakdown spectroscopy (LIBS) calibration models corresponding to 484.4-, 490.5-, and 546.7-nm peaks. Results show that the 490.5-nm peak model had the lowest limit of detection at 0.510 wt%, and all three models had similar root-mean-square errors of calibration values ranging from 0.470 to 0.498 wt%. Four validation samples were then used to test the diffusion and LIBS methods' ability to estimate concentration. The results of both methods match well with the inductively coupled plasma mass spectroscopy-measured concentrations.
机译:使用循环伏安法测试了LiCl-KCl中四种不同浓度的SmCl3,以确定Sm(III)和Sm(II)的扩散系数为8.59 x 10(-6)+/- 1.67 x 10(-6)和分别为8.01 x 10(-6)+/- 0.98 x 10(-6)cm(2)s(-1)。十个样品,以SmCl3浓度范围从0.5到10.0 wt%的盐锭的形式,用于创建三个激光诱导击穿光谱(LIBS)校准模型,分别对应于484.4、490.5和546.7 nm峰。结果表明,490.5 nm峰模型的最低检出限为0.510 wt%,并且所有三个模型的校准值的均方根误差均在0.470至0.498 wt%之间。然后使用四个验证样本来测试扩散和LIBS方法估计浓度的能力。两种方法的结果均与电感耦合等离子体质谱法测得的浓度非常匹配。

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