首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >The Significance of Partial Melting Processes in Hydrothermal Low Sulfide Cu-Ni-PGE Mineralization Within the Footwall of the Sudbury Igneous Complex, Ontario, Canada
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The Significance of Partial Melting Processes in Hydrothermal Low Sulfide Cu-Ni-PGE Mineralization Within the Footwall of the Sudbury Igneous Complex, Ontario, Canada

机译:加拿大安大略省萨德伯里火成岩复合体下盘壁热液低硫化物Cu-Ni-PGE矿化过程中部分熔融过程的意义

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摘要

We present new results and review existing data highlighting different aspects of the genetic relationship between partial melting and hydrothermal mineralizing processes in the contact aureole of the Sudbury Igneous Complex. At the basal contact of the igneous complex, in the footwall breccia, crystallized partial melt pods and veins, referred to as footwall granophyres are abundant and intrude all rock types including the breccia matrix, as well as massive Ni-Cu sulfide ore. The final crystallization of these melts was accompanied by the segregation of high salinity fluids dominantly in the temperature range of 450 to 550, as revealed by Ti-in-quartz thermometry and studies on primary fluid inclusions. In mineralized parts of the footwall breccia there is clear evidence that interaction of partial melts, exsolved fluids, and preexisting magmatic sulfides occurred. In the deeper footwall of the Sudbury Igneous Complex, similar footwall granophyres occur as networks of veins intruding impact brecciated (Sudbury breccia) country rocks and have an intimate spatial association with hydrothermal, low sulfide assemblages highly enriched in Pt, Pd, and Au (with a unique assemblage of PGM, including malyshevite and lisiguangite). It is suggested that partial melting processes were widespread in the contact and proximal footwall environment of the igneous complex and they were important in providing high salinity magmatic fluids to a hydrothermal system responsible for redistribution of base and precious metals. We describe observations which may evidence the migration of partial melts from the contact into the deeper footwall. Furthermore, we suggest a cogenetic model for the precipitation of sulfide-hydrous silicate assemblages in close spatial association to footwall granophyres. We emphasize that the use of footwall granophyres in mineral exploration for Cu-Ni-PGE ores in the footwall of the Sudbury Igneous Complex is clearly justified. Mapping of footwall granophyre vein networks high-lights areas that were proximal to the contact environment and point out structural pathways that may have been used by syn- or postgenetic mineralizing fluids in a given area. Widespread partial melting appears to have occurred in the footwall of other large mafic-ultramafic complexes (such as Bushveld and Duluth) and similar genetic relationships of partial melting and ore-forming hydrothermal processes may have possibly existed also in these systems.
机译:我们提出了新的结果,并回顾了现有的数据,这些数据突出了萨德伯里火成岩复合体的接触光环中部分熔融和热液成矿过程之间的遗传关系的不同方面。在火成岩复合体的基础接触处,在底盘角砾岩中,结晶的部分熔融荚果和脉(称为底盘粒岩)丰富,侵入了包括角砾岩基体以及块状镍-铜硫化物矿石在内的所有岩石类型。这些熔体的最终结晶伴随着主要在450至550温度范围内的高盐度流体的偏析,如钛石英石英热分析法和对主要流体包裹体的研究所揭示的。在后壁角砾岩的矿化部分中,有明确的证据表明发生了部分熔体,溶解的流体和预先存在的岩浆硫化物的相互作用。在萨德伯里火成岩复合体的更深底盘中,相似的底盘花岗石也发生于侵入冲击角砾(Sudbury角砾岩)乡村岩石的静脉网络中,并且与高度富含Pt,Pd和Au的热液,低硫化物组合有密切的空间联系。 PGM的独特组合,其中包括硅镁铝石和锂硅锰铁矿。有人认为,部分熔融过程在火成岩体的接触面和近端下盘壁环境中很普遍,它们对于向负责基础金属和贵金属再分布的水热系统提供高盐度岩浆流体很重要。我们描述的观察结果可能会证明部分熔体从接触层移入更深的下盘壁。此外,我们提出了一种与硫化物-含水硅酸盐组合物沉淀的共生模型。我们强调,在萨德伯里火成岩复合体下盘下的Cu-Ni-PGE矿石进行矿物勘探时,使用下盘下岩层显然是合理的。底盘食草植物静脉网络的制图高亮显示了接触环境附近的区域,并指出了给定区域中同生或后生矿化流体可能已经使用的结构路径。在其他大型铁镁质-超镁铁质复合体(如Bushveld和Duluth)的下盘中似乎发生了广泛的部分熔融,并且在这些系统中可能也存在着相似的部分熔融和成矿热液过程的遗传关系。

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