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The Influence of Using Automated Sample Preparation and Pressed Powder Pellets on Data Quality When Analysing Iron Ore Samples Using X-ray Fluorescence Spectrometry (XRFS) Techniques

机译:使用X射线荧光光谱法(XRF)技术分析铁矿石样品时使用自动样品制备和压制粉末颗粒对数据质量的影响

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It is acknowledged that the analysis of iron ores using X-ray fluorescence (XRF) for major and minor elements is best carried out on fusion discs. This method of sample preparation eliminates mineral and particle size effects which can lead to biased results when using pressed powder pellets. However, the fusion disc method is costly as it requires a high capital investment in platinumware, requires experienced operators and uses expensive fluxes. Also, the dilution effect complicates the analysis of trace elements. For many applications, such as exploration and mining control, the method of XRF analysis of iron ores by pressed powder pellet probably provides data of adequate quality. Kumba Iron Ore, an iron ore producer in South Africa, recognises this and carries out most analyses of iron ore by pressed powder pellet and uses the automated fusion method mainly for certification of in-house calibration standards and quality control (QC) samples that are used for validation of pressed powder pellet method purposes. Automated fusion is also used for analysing the composite export shipping samples. All the other exploration, production, despatching and plant operation samples are done by the pressed powder pellet method. Automation of sample preparation procedures should improve the quality of data for pressed powder pellets. To compare the precision of the three methods of sample preparation and XRF analysis, 20 aliquots of a QC standard were prepared and analysed by each procedure/preparation method. The results and statistical data on the most important elements, Fe, K_2O and P, are as shown later in Table 2. Clearly the precision is best for the auto prepared fusion discs, as expected, and worst for the manually prepared pressed powder pellets. However, the data generated from the auto prepared pressed powder pellets compare remarkably well against those from the auto prepared fusion discs.
机译:承认使用X射线荧光(XRF)对主要和次要元素的铁矿石的分析最好在融合盘上进行。这种样品制备方法消除了在使用压制粉末粒料时可以导致偏置结果的矿物和粒度效应。但是,融合盘方法昂贵,因为它需要在铂仓中的高资本投资,需要经验丰富的运营商并使用昂贵的助势。此外,稀释效果使微量元素的分析复杂化。对于许多应用,例如勘探和采矿控制,压制粉末颗粒的铁矿石XRF分析方法可能提供了足够的质量数据。南非铁矿石生产商昆巴铁矿石认识到这一点,并通过压制粉末颗粒进行铁矿石的大多数分析,并采用自动化融合方法,主要用于内部校准标准和质量控制(QC)样本的认证用于验证压制粉末颗粒方法目的。自动化融合还用于分析复合出口运输样品。所有其他勘探,生产,发货和植物操作样本都是通过压制粉末颗粒法完成的。样品制备程序的自动化应提高压制粉末颗粒的数据质量。为了比较样品制备和XRF分析的三种方法的精度,通过每种方法/制备方法制备和分析QC标准的20个等分试样。关于最重要的元素,Fe,K_2O和P的结果和统计数据如下表2所示。显然,精确是最适合于自动制备的融合盘,如预期的,最糟糕的是手动制备的压制粉末颗粒。然而,从自动制备的压制粉末颗粒产生的数据比较良好地比较来自自动制备的融合盘的数据。

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