快速 X 射线荧光分析作为地球化学勘探中传统光谱方法的现代替代方法

O. V. Kuznetsova, O. Kachor, I. A. Matyuhin, Z. L. Ikramov, A. Parshin
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摘要

本研究的目的是介绍现代便携式快速 X 射线荧光分析仪在解决地质和地球化学勘探问题时的能力方面的研究成果。以应用的 SciAps X200 分析仪为例,研究了便携式仪器分析结果的计量指标。根据国家标准参考样本进行的分析研究的准确性评估结果显示。分析结果的可重复性是根据来自博代博同源区有前景的金矿地点的样品计算得出的。该方法被证明具有很高的精确度,在许多情况下测量误差比允许的认证值低许多倍。根据元素的不同,重现性为 0.5%-20%,在大多数情况下明显低于方法允许值。实验室间比较试验的结果证实了固定式和便携式 X 射线荧光分析仪分析结果的可比性。对于一些重要元素,作者已经证实没有必要使用酸分解--原子发射和原子吸收光谱这种劳动密集型的昂贵方法来完善现场快速 X 射线荧光分析的结果。事实证明,在地质勘探工作中引入便携式快递设备将使实时 "现场 "分析研究成为可能。
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Rapid X-ray fluorescence analysis as a modern alternative to traditional spectral methods in geochemical prospecting
The purpose of the study is to present the research results of the capabilities of modern portable rapid X-ray fluorescence analyzers when solving problems of geological and geochemical prospecting. On example of the applied SciAps X200 analyzer, the metrological indicators for the analysis results by portable instruments have been studied. The accuracy assessment results of analytical studies according to state standard reference samples are shown. Reproducibility of the analysis results is calculated on the basis of samples from promising gold sites of the Bodaibo synclinorium. The method is proved to be of high precision, and measurement errors in many cases are many times lower than the permissible certified values. The reproducibility is shown as 0,5–20 % depending on the element, which in most cases is significantly lower than the methodology permits. The results of interlaboratory comparative tests confirming the comparability of the analytical results of stationary and portable X-ray fluorescence analyzers are presented. For a number of significant elements, the authors have substantiated the lack of need to refine the results of the field rapid X-ray fluorescence analysis using labor-intensive and expensive methods with acid decomposition - atomic emission and atomic absorption spectroscopy. It has been proved that introduction of portable express equipment into geological prospecting works will make it possible to conduct real-time “on site” analytical studies.
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