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Application of the Zr/Hf Ratio in the Determination of Hafnium in Geochemical Samples by High-Resolution Inductively Coupled Plasma Mass Spectrometry

机译:Zr / Hf比值在高分辨率电感耦合等离子体质谱法测定地球化学样品中nium中的应用

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Hafnium content and its change are of significance in geochemistry and cosmochemistry; however, the determination of hafnium has always been problematic in analytical chemistry. In this paper, a new idea is proposed for the determination of hafnium in geochemical samples, including rocks, soils, and stream sediments. Through the comparison of two conventional open-type acid digestion methods (HF-HNO3-HClO4 and HF-HNO3-H2SO4), it was found that although neither of these methods could fully digest the zirconium and hafnium in a sample, the zirconium and hafnium digestion behaviors in one sample were consistent in the 60 experimental geochemical reference materials with different properties, so the experimentally determined Zr/Hf ratio in solution could be used to calculate the hafnium content in a sample. In addition, possible mass spectral interferences during the determination of zirconium and hafnium by high resolution inductively coupled plasma mass spectrometry (HR-ICPMS) were studied, and it was found that the mass spectral interferences of the selected isotopes Zr-90 and Hf-178 could be neglected. The mass spectral behaviors of Zr-90 and Hf-178 were also very consistent during the determination by HR-ICPMS. Since the hafnium content was calculated using the ratio value, all of the errors (including the errors in weighing process, the accidental errors during operation and the instrument fluctuation in the determination) of the Zr/Hf ratio could be effectively reduced or even eliminated. The relative standard deviation of the actual samples was lower than 3.2%, and the detection limit of the method (considering the dilution effect and matrix effect during measurement of the Zr/Hf ratio and zirconium content) was 0.04 mu g/g. The proposed method could satisfy the requirement for the determination of hafnium in geochemical samples.
机译:geo的含量及其变化在地球化学和宇宙化学中具有重要意义。但是,analytical的测定一直是分析化学中的难题。本文提出了一种测定岩石,土壤和河流沉积物等地球化学样品中nium的新方法。通过比较两种常规的开放式酸消解方法(HF-HNO3-HClO4和HF-HNO3-H2SO4),尽管这两种方法都不能完全消化样品中的锆和ha,但锆和ha却不能完全消解。在60个具有不同特性的实验地球化学参比物质中,一个样品的消化行为是一致的,因此可以通过实验确定溶液中的Zr / Hf比值来计算样品中的content含量。此外,研究了高分辨率电感耦合等离子体质谱法(HR-ICPMS)测定锆和ha时可能出现的质谱干扰,发现所选同位素Zr-90和Hf-178的质谱干扰可以忽略。在HR-ICPMS测定过程中,Zr-90和Hf-178的质谱行为也非常一致。由于使用比率值计算the含量,因此可以有效地减少甚至消除Zr / Hf比的所有误差(包括称量过程中的误差,操作过程中的偶然误差和测定中的仪器波动)。实际样品的相对标准偏差低于3.2%,该方法的检测极限(考虑到Zr / Hf比和锆含量的测量过程中的稀释作用和基质作用)为0.04μg / g。该方法可以满足地球化学样品中determination的测定要求。

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