粉末压片-X射线荧光光谱法测定海域砂矿中的高含量锆和铪

Determination of High-Content Zirconium and Hafnium in Marine Placer Deposits by Powder Tablet-X-ray Fluorescence Spectrometry

  • 摘要: 准确测定锆砂矿中锆(Zr)和铪(Hf)含量,对矿产资源评价与高效利用至关重要。然而,现有湿化学法存在溶矿难的问题,采用X射线荧光光谱法(XRF)进行测定则面临高含量锆铪标准物质稀缺、锆铪谱线重叠严重、基体干扰显著等技术瓶颈。本文建立了一种基于粉末压片制样的XRF分析方法,用于测定海域砂矿中的Zr和Hf。通过混合锆矿石与国家一级标准物质,构建了宽范围、基体匹配的校准系列。针对不同含量区间,分别利用Hf的Lα和Lβ谱线建立双校准曲线,并结合康普顿散射线内标法和经验系数法,有效校正了基体效应及谱线重叠干扰。方法验证表明:锆、铪测定结果的相对误差均小于10.2%,相对标准偏差(RSD)均小于1.50%,方法检出限分别为1.2 μg/g锆(Zr Kα)、0. 8 μg/g铪(Hf Lα)、7.0 μg/g铪(Hf Lβ)。通过分析海南东部滨海地区的海域砂矿样品,本方法测定值与国家标准方法(电感耦合等离子体质谱法)吻合良好,相对偏差为锆≤6.2%,铪≤10.6%,可应用于海域砂矿资源的高通量分析筛查。

     

    Abstract: Accurate determination of zirconium (Zr) and hafnium (Hf) in zircon sands is essential for the evaluation and efficient utilization of mineral resources. Conventional wet chemical methods are often hampered by difficulties in sample dissolution, while X-ray fluorescence spectrometry (XRF) faces challenges such as a lack of high-concentration Zr-Hf reference materials, severe spectral line overlap and significant matrix effects. In this study, an XRF method based on pressed-pellet sample preparation was developed for the determination of Zr and Hf in marine placer samples. A broad-range, matrix-matched calibration series was constructed by blending zircon ore with national certified reference materials. To address spectral interference across different concentration ranges, dual calibration curves were established using the Hf Lα and Hf Lβ lines. Matrix effects and line overlap were effectively corrected using the Compton scattering internal standard method combined with empirical coefficient correction. Validation results showed relative errors below 10.2% and relative standard deviations (RSD) below 1.50% for both elements. The detection limits were 1.2 μg/g for Zr (Kα), 0.8 μg/g for Hf (Lα), and 7.0 μg/g for Hf (Lβ). The method was applied to marine placer samples collected from the eastern coastal area of Hainan, and the results were in good agreement with those obtained by inductively coupled plasma-mass spectrometry (ICP-MS) following the national standard method GB/T 20260-2006 (Part 10) with relative deviations of ≤6.2% for Zr and ≤10.6% for Hf. These findings demonstrate that the proposed method is suitable for high-throughput analysis and screening of marine placer resources.

     

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