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首页> 外文期刊>Mineralium deposita >Geology, petrography, geochemistry, and genesis of sulfide-rich pods in the Lac des Iles palladium deposits, western Ontario, Canada
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Geology, petrography, geochemistry, and genesis of sulfide-rich pods in the Lac des Iles palladium deposits, western Ontario, Canada

机译:加拿大安大略省西部Las des Iles钯矿床中富含硫化物的豆荚的地质,岩石学,地球化学和成因

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The Lac des Iles Pd deposits are known for their Pd-rich sulfide-poor mineralization. However, previously undocumented sulfide-rich pods also occur within the intrusion that hosts the deposits. Given the complex magmatic and hydrothermal history of the mineralization at Lac des Iles, the sulfide-rich pods could have crystallized from magmatic sulfide liquids or precipitated from hydrothermal fluids. Sulfide-rich pods occur throughout the stratigraphy, in all rock types, and along comagmatic shear zones, and contain net-textured to massive sulfides. They can be divided into four main groups based on the variation in mineral assemblages: (1) pyrrhotite-pentlandite +/- pyrite-chalcopyrite-magnetite-ilmenite; (2) chalcopyrite +/- pyrrhotite-pentlandite-pyrite-magnetite-ilmenite; (3) pyrite +/- pentlandite-chalcopyrite-pyrrhotite-magnetite-ilmenite; and (4) magnetite +/- ilmenite-pyrrhotite-pentlandite-pyrite-chalcopyrite. Whole rock metal contents and S isotopic compositions do not change with the amount of pyrite present, except for slight enrichments in As and Bi. The presence of an essentially magmatic sulfide mineral assemblage (pyrrhotite-pentlandite +/- chalcopyrite) with pentlandite exsolution flames in pyrrhotite in some pods suggests that the pods crystallized from magmatic sulfide liquids. The very low Cu contents of the pods suggests that they are mainly cumulates of monosulfide solid solution (MSS). We propose a model whereby sulfide liquids were concentrated into dilation zones prior to crystallizing cumulus MSS. Intermediate solid solution crystallized from the fractionated liquids at the edges of some pods leaving residual liquids enriched in Pt, Pd, Au, As, Bi, Sb, and Te. These residual liquids are no longer associated with the pods. During subsequent alteration, pyrite replaced MSS/pyrrhotite, but this did not affect the platinum-group element contents of the pods.
机译:Las des Iles Pd矿床因富含Pd的硫化物贫矿而闻名。但是,以前未记录的富含硫化物的豆荚也出现在容纳矿床的侵入岩中。考虑到Las des Iles矿化的复杂岩浆和水热历史,富含硫化物的豆荚可能已经从岩浆硫化物液体中结晶或从热液中沉淀出来。在整个地层中,所有岩石类型中以及沿岩浆剪切带都存在富含硫化物的豆荚,并且含有网状结构的块状硫化物。根据矿物组成的变化,它们可分为四大类:(1)黄铁矿-膨润土+/-黄铁矿-黄铜矿-磁铁矿-钛铁矿; (2)黄铜矿+/-黄铁矿-膨润土-黄铁矿-磁铁矿-钛铁矿; (3)黄铁矿+/-膨润土-黄铜矿-闪锌矿-磁铁矿-钛铁矿; (4)磁铁矿+/-钛铁矿-硫铁矿-膨润土-黄铁矿-黄铁矿-黄铜矿。整个岩石金属含量和S同位素组成不会随黄铁矿含量的变化而变化,除了砷和铋的少量富集。在一些豆荚中,在黄铁矿中存在具有岩浆硫化物矿物成分(硫铁锰矿-五芒铁矿+/-黄铜矿)的本质岩浆硫化物矿物组合,表明该豆荚是从岩浆硫化物液体中结晶的。豆荚中的铜含量非常低,表明它们主要是单硫化物固溶体(MSS)的堆积。我们提出了一种模型,在该模型中,硫化物液体在使积云MSS结晶之前被浓缩到膨胀区中。中间固溶体从一些豆荚边缘的分馏液体中结晶出来,剩下的残余液体富含Pt,Pd,Au,As,Bi,Sb和Te。这些残留的液体不再与豆荚结合。在随后的蚀变过程中,黄铁矿替代了MSS /硫铁矿,但这并不影响豆荚中的铂族元素含量。

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