首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Determination of gold and the platinum group elements in geological samples by ICP-MS after nickel sulphide fire assay: difficulties encountered with different types of geological samples
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Determination of gold and the platinum group elements in geological samples by ICP-MS after nickel sulphide fire assay: difficulties encountered with different types of geological samples

机译:硫化镍火试验后通过ICP-MS测定地质样品中的金和铂族元素:不同类型的地质样品遇到的困难

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摘要

Problems involved in the determination of Au and the platinum group elements by the nickel sulphide fire assay (NiS-FA) procedure for black shale samples, samples containing magnetite, and samples containing As, Cu, and Fe were studied. The interference of the graphite in black shale samples were eliminated either by roasting the sample prior to fusion or by adding an oxidant to the fusion flux. Addition of a reducing agent to samples, containing the oxygen-rich mineral magnetite, enabled the NiS-FA procedure to be carried out for this sample type. The interference of Cu on Rh in the ICP-MS determination was corrected by establishing a linear correlation between the interference of Cu on ~(103)Rh and ~(105)Pd.
机译:研究了黑色页岩样品,含磁铁矿样品以及As,Cu和Fe样品通过硫化镍火焰测定(NiS-FA)方法测定Au和铂族元素时涉及的问题。通过在熔融之前烘烤样品或在熔融助熔剂中添加氧化剂,可以消除石墨对黑页岩样品的干扰。向包含富氧矿物磁铁矿的样品中添加还原剂,可使该样品类型执行NiS-FA程序。通过建立Cu对〜(103)Rh和〜(105)Pd的干扰之间的线性相关关系,可以校正ICP-MS中Cu对Rh的干扰。

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