Copper and zinc isotopic variations in Ni-Cu-PGE ores of the Noril’sk Province (Russia)

K. Malitch, I. Badanina, N. G. Soloshenko, S. Sluzhenikin
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Abstract

Research subject. Mineral assemblages of sulfides from massive and disseminated sulfide nickel-copper-platinum-group element (Ni-Cu-PGE) and low-sulfide PGE ores of the Noril’sk Province, which hosts the richest complex deposits of platinum-group metals, nickel, and copper. Aim. In order to identify sources of ore material and explore new forecasting approaches for Ni-Cu-PGE deposits, we study the Cu- and Zn isotopic compositions of sulfides from economic Kharaelakh and Noril’sk-1 intrusions containing unique and large sulphide Ni-Cu-PGE deposits (Oktyabr’sk and Noril’sk-1, respectively), subeconmic Zub-Marksheider and Vologochan intrusions containing small- to medium-size Ni-Cu-PGE deposits, and non-economic Nizhny Talnakh and Nizhny Noril’sk intrusions containing low grade disseminated Ni-Cu mineralization. Results. The analyzed samples are characterized by sulfide mineral assemblages, which contain mainly chalcopyrite, pyrrhotite, pentlandite, troilite, cubanite, and galena. Sulfide Ni-Cu-PGE ores of the Oktyabr’sk and Noril’sk-1 deposits, associated with economic intrusions (i.e., Kharaelakh and Noril’sk-1), demonstrate distinct δ65Cu values from –2.42 to –1.40‰ and from –0.33 to 0.60‰, respectively, which differ from the δ65Cu values for sulfides from other Ni-Cu-PGE deposits and ore occurrences of the Noril’sk Province (data comprise 36 analyses). We note that the Cu-isotopic composition for sulfide minerals of massive and disseminated ores from the Kharaelakh intrusion has similar “isotope-light” characteristics. The most pronounced shift towards “isotope-heavy” copper was found in the horizon of low-sulfide PGE ores of the Noril’sk-1 intrusion (δ65Cu = 0.51–0.60‰). The isotopic composition of Zn (δ66Zn) for the studied sulfide samples from economic, subeconomic, and non-economic intrusions, with the exception of one sample (0.73 ± 0.14‰), is characterized by similar “isotope-light” values (from –0.65 to –0.03‰). Conclusions. The revealed variations in the Cu- and Zn-isotopic composition in the studied sulfide assemblages from all types of ores reflect their primary characteristics; however, for the unique Oktyabr’sk Ni-Cu-PGE deposit, characterized by the most “isotopically light” composition of copper (δ65Cu = –1.9 ± 0.34‰), the possibility of assimilation of an external source of Cu during the formation of sulfide Ni-Cu-PGE ores cannot be excluded. The combined use of Cu and Zn isotopic parameters proved to be a weakly informative predictive indicator for the detection of high-grade sulfide ores, primarily due to the similarity of the Zn isotopic composition of the ore material in all investigated intrusions of the Noril’sk Province.
诺里尔斯克省(俄罗斯)镍-铜-铂铑矿石中的铜和锌同位素变化
研究课题。诺里尔斯克省块状和弥散硫化物镍-铜-铂族元素(Ni-Cu-PGE)和低硫化物铂族元素矿石中硫化物的矿物组合,该省拥有最丰富的铂族金属、镍和铜复合矿床。目的。为了确定矿石材料的来源并探索镍-铜-PGE 矿床的新预测方法,我们研究了含有独特的大型硫化物镍-铜-PGE 矿床(Oktyabr'sk 和 Noril'sk-1)的 Kharaelakh 和 Noril'sk-1 经济侵入体硫化物的铜和锌同位素组成(分别为 Oktyabr'sk 和 Noril'sk-1、分别为 Oktyabr'sk 和 Noril'sk-1)、含有中小型镍-铜-地质金属矿床的亚生态 Zub-Marksheider 和 Vologochan 侵入体,以及含有低品位散布型镍-铜矿化的非经济 Nizhny Talnakh 和 Nizhny Noril'sk侵入体。结果。分析样本的特征是硫化物矿物集合体,其中主要含有黄铜矿、黄铁矿、辉铜矿、透辉石、方铅矿和方铅矿。与经济侵入体(即 Kharaelakh 和 Noril'sk-1)有关的 Oktyabr'sk 和 Noril'sk-1 矿床的硫化物镍铜钾长石矿石显示出明显的 δ65Cu 值,分别为 -2.42 至 -1.40‰ 和 -0.33 至 0.60‰,与 Noril'sk 省其他镍铜钾长石矿床和矿点硫化物的 δ65Cu 值不同(数据包括 36 项分析)。我们注意到,来自 Kharaelakh 侵入体的块状和浸染状矿石硫化物矿物的铜同位素组成具有类似的 "同位素轻 "特征。在 Noril'sk-1 侵入体的低硫化 PGE 矿石地层中,铜的 "同位素重 "转变最为明显(δ65Cu = 0.51-0.60‰)。所研究的来自经济、次经济和非经济侵入体的硫化物样本的锌(δ66Zn)同位素组成,除一个样本(0.73 ± 0.14‰)外,都具有相似的 "同位素轻 "值(从-0.65到-0.03‰)。结论所研究的各类矿石硫化物集合体的铜和锌同位素组成的变化反映了它们的主要特征;然而,对于独特的 Oktyabr'sk 镍-铜-铂铑矿床来说,其特点是铜的 "同位素 "组成最轻(δ65Cu = -1.9 ± 0.34‰),因此不能排除在硫化物镍-铜-铂铑矿石形成过程中被外部铜源同化的可能性。综合利用铜和锌同位素参数被证明是探测高品位硫化矿的一个信息量较弱的预测指标,这主要是由于在诺里尔斯克省所有调查的侵入体中,矿石材料的锌同位素组成相似。
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