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A new sample preparation method for WD-XRF analysis of sulfide ores by fusion techniques: a BN crucible for protection against contamination and quantitative retention of sulfur

机译:通过融合技术对硫化矿石进行WD-XRF分析的新样品前处理方法:BN坩埚,可防止硫的污染和定量保留

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In this article, a methodology is described for the wavelength-dispersive X-ray fluorescence analysis of sulfide ores by fusion techniques. A boron nitride crucible is successfully utilised during pre-oxidation with no adhesion of sample powder and contamination. The combination of oxidant LiNO3 and flux Li2B4O7 at a mass ratio of 20 : 80 is demonstrated to be suitable for the quantitative retention of sulfur and the formation of homogeneous sample beads. The optical oxidation parameters, obtained by an orthogonal experiment L-9(3(4)) using the results obtained from the sulfur retention ratio using the sulfur analyser, for the quantitative retention of sulfur are as follows: temperature, 650 degrees C; time, 30 min and dilution ratio, 1 : 30. Fusion at 1000 degrees C indicates that sulfur does not volatilise as Li2SO4. The quantitative retention of sulfur in the entire process is validated by independent methods, such as X-ray diffraction, thermogravimetry-differential thermal analysis, as well as by the use of a sulfur analyser and analysis of reference materials. Moreover, 13 major elements present in sulfide ores were simultaneously and rapidly measured with precision and safety.
机译:在本文中,介绍了一种通过融合技术对硫化物矿石进行波长色散X射线荧光分析的方法。在预氧化过程中成功使用了氮化硼坩埚,没有样品粉末的粘附和污染。已证明质量比为20:80的氧化剂LiNO3和助熔剂Li2B4O7的组合适用于硫的定量保留和均质样品珠的形成。通过使用硫分析仪从硫保留率获得的结果通过正交实验L-9(3(4))获得的光学氧化参数,用于硫的定量保留如下:温度为650℃;温度为650℃。时间为30分钟,稀释比为1:30。在1000摄氏度下熔融表明硫不会像Li2SO4一样挥发。通过独立的方法(例如X射线衍射,热重分析-差热分析)以及使用硫分析仪和标准物质分析,可以验证整个过程中硫的定量保留。而且,同时,快速,准确,安全地测量了硫化矿石中存在的13种主要元素。

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