首页> 外文期刊>Canadian journal of earth sciences >The Coulon deposit: quantifying alteration in volcanogenic massive sulphide systems modified by amphibolite-facies metamorphism
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The Coulon deposit: quantifying alteration in volcanogenic massive sulphide systems modified by amphibolite-facies metamorphism

机译:库隆矿床:量化由闪石岩相变质作用改造的火山成块的大型硫化物系统中的变化

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摘要

The Coulon deposit is a volcanogenic massive sulphide (VMS) system in the James Bay area, Superior craton, Quebec, that was metamorphosed to amphibolite-facies conditions. The chemistry and mineralogy of the VMS-related alteration halo proximal to the mineralized sulphide lenses are investigated, using samples collected in the field and 5583 chemical analyses provided by Osisko Ltd. Alteration is quantified using mass balance and normative calculations, and the application and performance of these methods in an exploration context are investigated. In VMS systems, altered rocks proximal to the ore zones are characterized by multi-element metasomatism, which is best quantified by mass balance methods that have been successfully applied in the study area. However, mass balance calculations necessitate the documentation of a precursor, which is not always possible in an exploration context; therefore, an alternative method (i.e., alteration indices) was also evaluated. In most VMS systems, proximal alteration is characterized by chlorite (chloritization), muscovite (sericitization), and quartz (silicification), while at the Coulon deposit, altered rocks contain mostly cordierite, biotite, sillimanite, and quartz. Alteration indices were calculated using observed and normative minerals, and provide satisfactory results similar to those obtained with mass balance calculations. Using these results, recommendations are made to estimate the intensity of alteration in the core shack using the proportions of observed minerals. Alteration indices are sensitive to the composition of precursors; and because of high-grade metamorphism, chloritization and sericitization are not precisely quantified. Recognizing these limitations is essential to successful quantification of alteration in areas metamorphosed to high-grade conditions.
机译:Coulon矿床是魁北克上等克拉通市James湾地区的一个火山成块的大块硫化物(VMS)系统,已变质为闪石岩相条件。使用现场收集的样品和Osisko Ltd.提供的5583化学分析,研究了与矿化硫化物晶状体最接近的VMS相关蚀变晕的化学和矿物学。使用质量平衡和规范计算以及应用和性能对蚀变进行了定量研究了这些方法中的一种。在VMS系统中,靠近矿区的蚀变岩石具有多元素交代作用的特征,这最好通过已在研究区成功应用的质量平衡方法进行量化。但是,质量平衡计算需要对前体进行记录,这在勘探环境中并不总是可能的。因此,还评估了另一种方法(即变更索引)。在大多数VMS系统中,近端蚀变的特征是亚氯酸盐(氯化),白云母(绢云母)和石英(硅化),而在库隆矿床,蚀变的岩石主要含有堇青石,黑云母,硅线石和石英。蚀变指数是使用观察到的和规范的矿物质计算得出的,与质量平衡计算获得的结果相似,提供了令人满意的结果。利用这些结果,提出了使用观察到的矿物质的比例来估算岩心窝中蚀变强度的建议。蚀变指数对前体的组成很敏感。并且由于高级变质作用,无法精确量化氯化和绢云母化。认识到这些局限性对于成功量化变质为高级条件的区域中的变化至关重要。

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