首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Chalcophile and platinum-group element distribution in pyrites from the sulfide-rich pods of the Lac des Iles Pd deposits, Western Ontario, Canada: Implications for post-cumulus re-equilibration of the ore and the use of pyrite compositions in exploration
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Chalcophile and platinum-group element distribution in pyrites from the sulfide-rich pods of the Lac des Iles Pd deposits, Western Ontario, Canada: Implications for post-cumulus re-equilibration of the ore and the use of pyrite compositions in exploration

机译:加拿大西安大略省Las des Iles Pd矿床富含硫化物的豆荚中黄铁矿中的硫属元素和铂族元素分布:对矿石后重整再平衡和在勘探中使用黄铁矿成分的意义

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The Lac des Iles Pd-deposits are atypical within the scope of platinum-group element (PGE) deposits. This is because the deposits do not resemble a classical PGE deposit in a number of ways: the intrusion is small and concentrically zoned; most of the host rocks to the deposits no longer have a primary mineralogy and equilibrated under greenschist conditions; the textures of the rocks from the ore zones are extremely variable; and the ores have very high Pd/Ir and Pd/Pt ratios. In addition to the disseminated sulfides, there are sulfide-rich pods present throughout the stratigraphy. The sulfide mineral textures and proportions within the pods vary from those which are essentially magmatic to those which consist predominantly of pyrite. The pyrite could have been deposited from hydrothermal fluids or it could have formed by alteration of magmatic sulfides. In order to distinguish between these two origins, the PGE and chalcophile element contents of the pyrite were investigated. It was found that the pyrite contains Os, Ir, Ru and Rh. These elements also concentrate in the magmatic sulfides pyrrhotite and pentlandite. Their presence in the pyrite could be explained by redistribution of Fe from pyrrhotite to silicate minerals that are present within and around the sulfide pods, possibly during cooling. Maps of the distribution of the elements show that there is zoning of the elements. The IPGE-Rh are present towards the cores of pyrite along with As whereas Co and Se are present towards the rims. Mobile elements such as Pb, Bland Ag are present in thin overgrowths at the edges of pyrite and in a few cases, Pt, Te and Sn are also present in the overgrowths. Comparison of the composition and element distribution with pyrites from other igneous settings (Sudbury and Aguablanca) shows similarities, suggesting a common ore-modifying process. In contrast, pyrites from low-temperature hydrothermal deposits have different compositions. A plot of Co/Se vs Sb/As appears to be effective at separating the igneous pyrites from pyrites found in other settings and could possibly be used in exploration. (C) 2015 Elsevier B.V. All rights reserved.
机译:Lac des Iles Pd矿床在铂族元素(PGE)矿床范围内是非典型的。这是因为这些沉积物在许多方面与经典的PGE沉积物不同:侵入体较小且同心地带;沉积物中的大多数主体岩石不再具有主要的矿物学,并且在绿片岩条件下达到平衡。矿区岩石的质地变化很大。并且矿石具有很高的Pd / Ir和Pd / Pt比。除散布的硫化物外,整个地层中还存在富含硫化物的荚。豆荚内的硫化物矿物质地和比例从基本岩浆的变化到主要由黄铁矿组成的变化。硫铁矿可能是从热液中沉积出来的,也可能是由于岩浆硫化物的改变而形成的。为了区分这两个来源,研究了黄铁矿的PGE和亲硫元素含量。发现黄铁矿包含Os,Ir,Ru和Rh。这些元素还集中在岩浆硫化物中,黄铁矿和五方铁矿。它们在黄铁矿中的存在可以通过将铁从黄铁矿重新分布到硫化物豆荚内及其周围可能存在的冷却过程中的硅酸盐矿物中来解释。元素分布图显示元素存在分区。 IPGE-Rh与As一起存在于黄铁矿核中,而Co和Se则存在于边缘。诸如Pb,Bland Ag之类的可移动元素存在于黄铁矿边缘的稀疏植物中,在少数情况下,Pt,Te和Sn也存在于该植物中。与其他火成岩环境(Sudbury和Aguablanca)的黄铁矿的成分和元素分布进行比较,显示出相似之处,这暗示了常见的矿石变质过程。相反,来自低温热液沉积物的黄铁矿具有不同的组成。 Co / Se与Sb / As的关系图似乎可以有效地将火成的黄铁矿与其他环境中的黄铁矿区分开,并且可以用于勘探。 (C)2015 Elsevier B.V.保留所有权利。

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