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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Platinum-Group Element and Re-Os Isotope Variations of the High-Grade Kilvenjarvi Platinum-Group Element Deposit, Portimo Layered Igneous Complex, Finland
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Platinum-Group Element and Re-Os Isotope Variations of the High-Grade Kilvenjarvi Platinum-Group Element Deposit, Portimo Layered Igneous Complex, Finland

机译:芬兰波尔蒂莫层状火成岩复杂高品位Kilvenjarvi铂族元素矿床的铂族元素和Re-Os同位素变化

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摘要

The Kilvenjarvi deposit is a high-grade platinum-group element (PGE) deposit located in the basement below the Portimo Layered Igneous Complex, Finnish Lapland. It consists of a stockwork of massive Cu-Fe-Ni sulfide veins, up to a meter wide, which cut metamorphic banded gneiss, amphibolite, and granite. The veins are surrounded by intense sulfide disseminations that are accompanied by an alteration of the basement mineral assemblage to chlorite, calcite, orthoamphibole, monazite, and an unidentified hydrous ferroaluminous silicate. The veins locally carry in excess of 110 ppm PGE, and neighboring rocks in the basement that contain disseminated sulfides locally carry 25 ppm PGE. The PGE are hosted primarily by michenerite (PdBiTe) and sobolevskite (Pd[Bi,Te]), with only very few grains of merenskyite, sperrylite, vysotskite-braggite, paolovite. cooperite, and isomertieite. The massive sulfide veins host two distinct mineral assemblages that reflect an event of sulfur addition. The primary assemblage of chalcopyrite, pentlandite, and pyrrhotite is similar to that of common orthomagmatic sulfides and appears to represent the crystallization product from a sulfide melt. However, the primary minerals have been replaced extensively by a low-temperature secondary assemblage of chalcopyrite, pyrite, marcasite, Ni-bearing pyrite, violarite, and millerite. The disseminated sulfides in the basement lithologic units comprise only the secondary assemblage and are notably richer in chalcopyrite than the massive sulfide veins. The sulfides are associated with chlorite and calcite, indicating that they were likely introduced by carbon-rich (CO_2 or CH_4) hydrothermal fluids. The Kilvenjarvi deposit is extremely fractionated in PGE compared to unmineralized rocks and PGE occurrences within the Portimo Complex. Os and Ir concentrations are very low, and Pd/Ir ratios reach 2.5 X 10~3. The massive and disseminated sulfides can be distinguished by their slightly different PGE patterns. Most notably, the massive sulfides are richest in Pd, and the disseminated sulfides are richest in Pt and Au. This fractionation appears to be consistent with an initial concentration in a magmatic sulfide melt followed by hydrothermal redistribution. The Re-Os isotopes have been significantly affected by Re mobility and cannot be used for dating. However, platinum-group mineral separates from the Kilvenjarvi deposit have nearly uniform isotopic compositions (~(187)Os/~(188)Os = 0.18-0.20) that are invariably higher than rocks from the Portimo Complex. Thus, it is evident that the Kilvenjarvi deposit had a significantly higher crustal contribution (possibly accounting for up to 18 percent of the Os) than parental magmas for the Layered series of the Portimo Complex. Contamination and fractional sulfide crystallization within the Portimo Marginal series may have been responsible for this isotopic signature. The deposit has some similarities to the various offsets associated with the Sudbury structure, Canada. A primary magmatic origin of the sulfides and PGE is evident from the mineralogy, geochemistry, and isotope geochemistry. However, the deposit has been subjected to extensive hydrothermal alteration involving carbon-rich fluids and resulting in a partial redistribution of the sulfides, PGE, and Re, extensive recrystallization, and a partial resetting of the Re-Os isotope system.
机译:Kilvenjarvi矿床是一种高级铂族元素(PGE)矿床,位于芬兰拉普兰Portimo分层火成岩复合体下方的地下室中。它由大量的Cu-Fe-Ni硫化物矿脉组成,长达一米,可以切割变质带状片麻岩,角闪石和花岗岩。矿脉被强烈的硫化物扩散所包围,伴随而来的是地下矿物质组合的变化为亚氯酸盐,方解石,邻苯二酚,独居石和一种未知的含水铁铝硅酸盐。矿脉局部携带的PGE含量超过110 ppm,地下室中含有弥散性硫化物的邻近岩石局部携带的PGE含量为25 ppm。该PGE主要由微钙铁矿(PdBiTe)和钠硼硅钙石(Pd [Bi,Te])托管,只有极少的陨石,闪锌矿,vysotskite-brggite,paolovite晶粒。铜矿和异铁矿。大量的硫化物矿脉拥有两个独特的矿物组合,反映了硫的添加事件。黄铜矿,方铁矿和黄铁矿的主要组成与普通的顺磁性硫化物相似,似乎代表了硫化物熔体的结晶产物。但是,主要的矿物已被黄铜矿,黄铁矿,黄铁矿,含镍黄铁矿,堇青石和Millerite的低温次级组合广泛替代。在地下岩性单元中散布的硫化物仅包含次生组合,并且明显比黄铜矿中的硫化物矿脉富含黄铜矿。硫化物与亚氯酸盐和方解石有关,表明它们很可能是由富含碳的(CO_2或CH_4)热液引入的。与Portimo复杂区内未矿化的岩石和PGE的发生相比,Kilvenjarvi矿床在PGE中的分布极为分散。 Os和Ir浓度很低,Pd / Ir比达到2.5 X 10〜3。块状和散布的硫化物可以通过其稍有不同的PGE模式来区分。最值得注意的是,块状硫化物的Pd含量最高,而散布的硫化物的Pt和Au含量最高。该分馏似乎与岩浆硫化物熔体中的初始浓度随后进行水热再分配相一致。 Re-Os同位素已受到Re迁移率的显着影响,因此不能用于测年。但是,从Kilvenjarvi矿床中分离出的铂族矿物具有几乎均匀的同位素组成(〜(187)Os /〜(188)Os = 0.18-0.20),始终高于Portimo Complex中的岩石。因此,很明显,与Portimo Complex分层系列的父母岩浆相比,Kilvenjarvi矿床的地壳贡献(可能占Os的18%)要高得多。 Portimo Marginal系列中的污染和部分硫化物结晶可能是造成这种同位素特征的原因。该矿床与加拿大萨德伯里结构的各种补偿有一些相似之处。硫化物和PGE的主要岩浆成因是矿物学,地球化学和同位素地球化学。但是,该矿床已经进行了广泛的水热蚀变,涉及富碳流体,导致硫化物,PGE和Re的部分重新分布,广泛的重结晶以及Re-Os同位素系统的部分重置。

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