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Origin and emplacement of the Aguablanca magmatic Ni-Cu-(PGE) sulfide deposit, SW Iberia: A multidisciplinary approach

机译:伊比利亚西南部阿瓜布兰卡岩浆镍-铜-(PGE)硫化物矿床的起源和位置:多学科方法

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摘要

A model is proposed for the origin and emplacement of the ca. 341 Ma Aguablanca magmatic Ni-Cu-(platinum group element [PGE]) sulfide deposit (SW Iberia) integrating petrological, geochemical, structural, and geophysical data. The Aguablanca deposit occurs in an unusual geodynamic context for this ore type (an active plate margin) as an exotic , magmatic subvertical breccia located at the northern part of the coeval gabbronorite Aguablanca stock (341 ± 1.5 Ma). Structural and gravity data show that mineralized breccia occurs inside the inferred feeder zone for the stock adjacent to the Cherneca ductile shear zone, a Variscan sinistral transpressional structure. The orientation of the feeder zone corresponds to that expected for tensional fractures formed within the strain field of the adjacent Cherneca ductile shear. Two distinctive stages are established for the origin and emplacement of the deposit: (1) initially, the ore-forming processes are attributed to magma emplacement in the crust, assimilation of crustal S, and segregation and gravitational settling of sulfide melt (a scenario similar to most plutonic Ni-Cu sulfide ores), and (2) final emplacement of the Ni-Cu sulfide-bearing rocks by multiple melt injections controlled by successive opening events of tensional fractures related to the Cherneca ductile shear zone.
机译:针对大约341 Ma Aguablanca岩浆镍-铜-(铂族元素[PGE]) 硫化物矿床(SW Iberia)整合,提出了一个模型。岩石,地球化学, 结构和地球物理数据。 Aguablanca矿床 发生在该矿石类型的异常地球动力学背景下(活跃的 板缘),为奇特的岩浆亚垂直角砾岩,位于 中世纪辉长石Aguablanca储层的北部 (341±1.5 Ma)。结构和重力数据表明, 矿化角砾岩发生在与切尔内卡延性剪切带相邻的 储层的推定馈线区域内,即Variscan 正弦反压结构体。 支线区域的方向对应于在相邻的切尔内卡延性 剪切力的应变场内形成的张性断裂 的方向。建立了矿床的成因 和沉积的两个独特阶段:(1)最初,成矿 的过程归因于地壳中的岩浆沉积 同化S,硫化物熔体的偏析和重力沉降(一种与大多数Plutonic Ni-Cu硫化物矿石相似的情况),以及(2)最终由 与切尔尼卡延性剪切带相关的张性裂缝的连续打开事件控制的多次熔体注入控制 对含Ni-Cu 硫化物的岩石的定位。

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  • 来源
    《GSA Bulletin》 |2010年第6期|915-925|共11页
  • 作者单位

    Departamento de Cristalografía y Mineralogía, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Departamento de Geodinámica, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Departamento de Cristalografía y Mineralogía, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Departamento de Cristalografía y Mineralogía, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Departamento de Geodinámica, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Departamento de Mineralogía y Petrología, Facultad de Ciencias, Instituto Andaluz de Ciencias de la Tierra, Universidad de Granada–Consejo Superior de Investigaciones Científicas (CSIC), 18071 Granada, Spain;

    Departamento de Geodinámica, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid, 28040 Madrid, Spain;

    Instituto Geológico y Minero de Espa?a, Ríos Rosas 23, 28003 Madrid, Spain;

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