0.5 ppm) are present'/> MINERALOGY OF RARE OCCURRENCES OF PRECIOUS-METAL-ENRICHED MASSIVE SULFIDE IN THE VOISEY'S BAY Ni-Cu-Co OVOID DEPOSIT, LABRADOR, CANADA
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MINERALOGY OF RARE OCCURRENCES OF PRECIOUS-METAL-ENRICHED MASSIVE SULFIDE IN THE VOISEY'S BAY Ni-Cu-Co OVOID DEPOSIT, LABRADOR, CANADA

机译:加拿大拉布拉多省Voisey's Bay Ni-Cu-Co卵形矿床中富含金属的大量硫化物的稀有矿物学

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摘要

The Voisey's Bay Ovoid Ni-Cu-Co magmatic sulfide deposit, Labrador, is generally poor in precious metals (Pt, Pd, Ag, Au), but unusual occurrences with elevated levels (Pt + Pd > 0.5 ppm) are present. We present a quantitative description of the precious-metal mineralogy of four such occurrences within massive sulfides. The four samples, all from near the center of the Ovoid, were examined by SEM-based Mineral Liberation Analysis for characterization of precious-metal minerals. Distributions of precious metals among the major sulfide minerals were estimated using mass-balance calculations based on bulk assays of the samples and the proportions and compositions of the minerals. The results indicate that the majority of precious metals are present as discrete mineral phases including sperrylite, froodite, michenerite, Au-Ag alloy, volynskite, stiitzite and acanthite, whereas minor to moderate amounts of Pt, Pd, Ag and Au are found in solid solution in pyrrhotite, pentlandite, chalcopyrite and galena. The precious-metal minerals are normally associated with pentlandite, galena, chalcopyrite, pyrrhotite and magnetite, and rarely with breithauptite (NiSb), altaite (PbTe), other precious-metal minerals and native bismuth. With the exception of sperrylite, which is coarse grained and liberated easily by electric pulse disaggregation, the precious-metal minerals are most commonly found as fine inclusions in pentlandite and galena, and less so as larger attachments. The associations are consistent with previously reported precious-metal mineral data from a hornblende gabbro dyke of the Southeast Extension Zone at Voisey's Bay, demonstrating similar modes of crystallization, which are likely related to crystallization of a highly differentiated sulfide magma in both areas. Processing of Pt from sperrylite and perhaps Pd from froodite could be achieved in ores with a mineralogy similar to the samples described here by grinding, and gravity or flotation methods, but the Au-Ag alloy, volynskite and stiitzite would likely be too fine to recover as discrete grains for Ag and Au concentration. Instead, the Ag and Au could be recovered as a by-product of Ni-Cu-Co processing of the pentlandite and chalcopyrite, which are the major hosts of the Ag and Au minerals.
机译:拉布拉多的Voisey's Bay卵形Ni-Cu-Co岩浆硫化物矿床通常稀有贵金属(Pt,Pd,Ag,Au),但存在异常现象,其含量升高(Pt + Pd> 0.5 ppm)。我们对块状硫化物中四种这样的事件的贵金属矿物学进行定量描述。通过基于SEM的矿物解放分析检查了全部来自卵形中心附近的四个样品,以表征贵金属矿物。使用质量平衡计算,基于样品的大量分析以及矿物的比例和组成,估算了主要硫化物矿物中的贵金属分布。结果表明,大多数贵金属以离散矿物相的形式存在,包括锂闪石,水辉石,微锌矿,Au-Ag合金,辉石,绢云母和and石,而在固体中发现少量至中等量的Pt,Pd,Ag和Au溶于黄铁矿,方铁矿,黄铜矿和方铅矿。贵金属矿物通常与五方铁矿,方铅矿,黄铜矿,黄铁矿和磁铁矿有关,很少与风白铁矿(NiSb),方铁矿(PbTe),其他贵金属矿物质和天然铋有关。除了闪长岩,它的粗大颗粒很容易通过电脉冲分解而释放出来,贵金属矿物最常见的是在五方岩和方铅矿中作为细粒夹杂物,而较少见于较大的附着物。这些关联与先前报道的来自Voisey's湾东南扩展区的角闪石辉长岩堤坝的贵金属矿物数据一致,表明了相似的结晶模式,这很可能与两个地区的高分化硫化物岩浆的结晶有关。在矿物学上类似于此处所述的样品,可以通过研磨,重力或浮选方法来处理闪锌矿中的Pt或也许从闪锌矿中的Pd,但是Au-Ag合金,辉钼矿和绢云母可能太细而无法回收作为Ag和Au浓度的离散晶粒。取而代之的是,Ag和Au可以作为镍和铜-镍矿加工的副产物而得到回收,该方解石和黄铜矿是Ag和Au矿物的主要来源。

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