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Summary of results of an international X-ray diffraction round robin for mineralogical analysis of iron ores

机译:International X射线衍射循环循环的结果摘要铁矿石矿物学分析

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摘要

X-ray diffraction (XRD) is a well-recognised, invaluable tool to provide detailed mineralogical analysis on a wide range of applications. However, despite the wide use of XRD in many industries, there are currently few recognised standard methods for quantitative XRD analysis and none for the analysis of iron ore materials. An initial step towards preparing a standard method for XRD analysis of iron ores was to assess the current level of precision achievable by practitioners of the technique by organising an international round robin. Six Australian chemically certified iron ore reference materials were distributed to over 100 international participants. A summary of over 120 data sets from more than 80 participants is presented. Results show that a bewildering array of techniques for sample preparation, data collection, phase identification and quantification were used. The reported values for the main components (ie hematite, goethite, quartz and amorphous content) show not only extensive variability between participants but also within participants' results for those who submitted multiple data sets. The disappointing low level of precision exhibited for a relatively simple mineral phase system indicates a strong requirement for development of a standardised procedure.
机译:X射线衍射(XRD)是一个公认的,宝贵的工具,为各种应用提供详细的矿物学分析。然而,尽管在许多行业中广泛使用了XRD,但目前目前有很少的公认标准方法用于定量XRD分析,无用于分析铁矿石材料。准备铁矿石XRD分析标准方法的初步步骤是通过组织国际循环来评估技术从业者可实现的当前精度水平。六澳大利亚化学认证的铁矿石参考资料分布在100多个国际参与者。提出了来自80多名参与者的120多个数据集的摘要。结果表明,使用用于样品制备,数据收集,相位鉴定和定量的令人欣赏的技术阵列。报告的主要成分(即赤铁矿,GETHETE,石英和非晶内容)显示了参与者之间的广泛变异,而且在提交多个数据集的人的结果中也是在参与者的结果中。对于相对简单的矿物相系统表现出令人失望的低精度表明了对发展标准化程序的强烈要求。

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