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Improved platinum-group element extraction by NiS fire assay from chromitite ore samples using a flux containing sodium metaphosphate

机译:使用含偏磷酸钠的助熔剂通过NiS火法从铬铁矿矿石样品中萃取改进的铂族元素

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Many chromite-rich rocks contain relatively high concentrations of the platinum-group elements (PGE). In many cases, the phases carrying PGE occur as either platinum-group minerals (PGM) or as base metal sulfides in solid solution in sulfides. In some cases, such as the UG-2 unit of the Bushveld Complex, the PGM are occluded inside chromite grains. Chromites are notably difficult to dissolve in most fluxes and if the chromite contains some PGM the possibility exists that not all the PGE will be recovered during fusion. In this work, shortcomings in published methods of analysis based on the nickel sulfide fire assay procedure were investigated and a new procedure developed based on the addition of sodium metaphosphate to the fusion mixture. Optimum composition of the fusion mixture was found to be 10 g sodium metaphosphate and 9 g silica to 10 g sample, 15 g sodium carbonate, 30 g lithium tetraborate, 7.5 g nickel and 4.5 g sulfur to achieve complete dissolution of chromite grains. The new flux mixture was evaluated by the analysis of reference material CHR-Pt+ (which is known to contain PGM inside chromite grains) and no undissolved chromite grains were found in the glassy slag. Analysis of the nickel sulfide beads from this fire assay using neutron activation analysis showed similar results for Rh and Ru when compared with published conventional true (or accepted) values, while Au, Ir, Os, Pd and Pt values determined here were 10 to 30% higher than the corresponding published conventional true values. it was concluded that the addition of sodium metaphosphate improved chromite dissolution in the flux and appears to improve PGE recovery.
机译:许多富铬铁矿岩石含有相对较高浓度的铂族元素(PGE)。在许多情况下,带有PGE的相要么以铂族矿物(PGM)的形式出现,要么以硫化物的固溶体形式出现为贱金属硫化物。在某些情况下,例如Bushveld Complex的UG-2装置,PGM被堵塞在亚铬铁矿晶粒内部。铬铁矿很难溶解在大多数助熔剂中,如果铬铁矿含有某些PGM,则存在熔合过程中并非所有PGE都会被回收的可能性。在这项工作中,研究了已发布的基于硫化镍着火分析方法的分析方法的不足,并开发了一种基于向熔融混合物中添加偏磷酸钠的新方法。发现熔融混合物的最佳组成是10 g偏磷酸钠和9 g二氧化硅至10 g样品,15 g碳酸钠,30 g四硼酸锂,7.5 g镍和4.5 g硫,以完全溶解亚铬酸盐颗粒。通过分析参考材料CHR-Pt +(已知铬铁矿晶粒内部含有PGM)评估了新的助熔剂混合物,并且在玻璃渣中未发现未溶解的铬铁矿晶粒。使用中子活化分析对这种火化验法中的硫化镍珠进行分析时,与已公布的常规真值(或公认值)相比,Rh和Ru的结果相似,而此处确定的Au,Ir,Os,Pd和Pt值为10至30比相应的已发布常规真实值高%。结论是,添加偏磷酸钠改善了铬在熔剂中的溶解,并似乎改善了PGE的回收率。

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