首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Laser Ablation-inductively Coupled Plasma-dynamic Reaction Cell-mass Spectrometry For The Determination Of Platinum Group Metals And Gold In Nis Buttons Obtained By Fire Assay Of Platiniferous Ores
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Laser Ablation-inductively Coupled Plasma-dynamic Reaction Cell-mass Spectrometry For The Determination Of Platinum Group Metals And Gold In Nis Buttons Obtained By Fire Assay Of Platiniferous Ores

机译:激光烧蚀-电感耦合等离子体动力反应池-质谱法测定辉光矿中火法测定的镍纽扣中的铂族金属和金

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This paper discusses the potential of laser ablation-inductively coupled plasma mass spectrometry (LA-ICPMS) for the determination of Au, Ir, Pd, Pt, Rh and Ru in NiS buttons obtained by fire assay of platiniferous ores. The method finally proposed is based on: (ⅰ) the sampling of large amounts of ores (40-75 g) in order to compensate for the typical inhomogeneous distribution of the target elements over the sample matrix; (ⅱ) the grinding of the NiS buttons obtained after the fire assay procedure in order to obtain more homogeneous samples and the subsequent pelleting of the resulting powders using polyethylene wax as a binder; (ⅲ) LA-ICPMS analysis based on the use of the line profiling mode for ablation of a representative portion of sample during each replicate measurement; (ⅳ) the pressurization of the dynamic reaction cell (DRC) with ammonia in order to cope with all spectral interferences, and the optimization of the RPq setting to prevent the clustering of ammonia with the main matrix components (Ni, Cu), which could otherwise give rise to new spectral overlaps; and (ⅴ) the use of home-made matrix-matched standards for calibration, combined with the monitoring of ~(61)Ni as an internal reference. In this way, it was feasible to obtain accurate values for all of the samples investigated with RSD values typically below 10% and LODs at the 10 ng g~(-1) level. This performance makes the method appealing for the control of these types of samples in the platinum group metal industry, successfully circumventing the need for the cumbersome digestion procedures currently in use.
机译:本文讨论了用激光烧蚀-电感耦合等离子体质谱法(LA-ICPMS)测定白金矿石火法测定的NiS纽扣中Au,Ir,Pd,Pt,Rh和Ru的潜力。最终提出的方法基于:(ⅰ)对大量矿石(40-75 g)进行采样,以补偿目标元素在样品基质上的典型不均匀分布; (ⅱ)研磨在火试验步骤之后获得的NiS纽扣,以获得更均匀的样品,随后将所得粉末用聚乙烯蜡作为粘合剂制粒; (ⅲ)LA-ICPMS分析,该分析基于在每次重复测量过程中使用线轮廓模式消融样品中代表性的部分; (ⅳ)用氨对动态反应池(DRC)进行加压以应对所有光谱干扰,并优化RPq设置以防止氨与主要基质成分(Ni,Cu)聚集,这可以否则会引起新的光谱重叠; (ⅴ)使用自制的基质匹配标准进行校准,并结合〜(61)Ni的监测作为内部参考。这样,对于所有调查的样品,其RSD值通常低于10%,LODs为10 ng g〜(-1)时,可以获得准确的值是可行的。这种性能使该方法吸引了铂族金属行业中这类样品的控制,成功地避免了对当前使用的繁琐消化程序的需求。

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