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首页> 外文期刊>Economic Geology >GENESIS OF NATIVE COPPER LODES IN THE KEWEENAW DISTRICT, NORTHERN MICHIGAN: A HYBRID EVOLVED METEORIC AND METAMOPHOGENIC MODEL
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GENESIS OF NATIVE COPPER LODES IN THE KEWEENAW DISTRICT, NORTHERN MICHIGAN: A HYBRID EVOLVED METEORIC AND METAMOPHOGENIC MODEL

机译:密歇根州北部基温那地区天然铜矿的成因:混合演化的金属和致光性模型

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摘要

The Keweenaw Peninsula of northern Michigan is well known for early diagenetic sulfide-dominant sediment-hosted stratiform copper mineralization hosted mainly by basal siltstone-shale units of the Nonesuch Formation in the White Pine district, and later native copper lodes hosted mainly by flow-top breccias and amygdaloidal portions of flood basalts and interbedded conglomerates of the stratigraphically lower Portage Lake Volcanics. The native copper mineralization is generally attributed to downdip burial metamorphism of the host strata. An alternative model is proposed here, involving a complementary influx of evolved meteoric water (elevated in salinity and progressively equilibrating with its aquifers), similar to the fluid which formed the White Pine mineralization. This model has several advantages over the metamorphogenic model alone. It would provide the salinity (by dissolution of evaporites) and moderately oxidizing conditions (as a result of hematitization, i.e., reddening, of coarse continental rift sediments) necessary for copper transport, and the evolved meteoric water would have been an important cupriferous brine owing to the leaching of trace amounts of copper from the voluminous aquifers. Further reduction of the evolved fluid would also explain the updip deposition of native copper in association with dehematitized pumpellyite- and chlorite-dominant (i.e., reduced) hydrothermal mineral assemblages. At the same time, this influx of meteoric water from highlands adjacent to the Keweenaw rift basin would have provided a mechanism to move the deep-seated hot, dense ore brine upward along the aquifers of the Portage Lake Volcanics. On its ascent from deep portions of the rift basin, the gravity-driven evolved meteoric brine would have mixed with the fluid generated by burial metamorphism to form a hybrid evolved meteoric-metamorphogenic oreforming hydrothermal brine.
机译:密歇根州北部的Keweenaw半岛以白松地区的无地层, 以及后来的天然铜矿床,主要由流顶角砾岩 以及洪水玄武岩的杏仁状部分和层状砾岩 铜矿化作用通常归因于宿主地层的下倾埋葬 变质作用。在此提出了一个替代模型,该模型涉及到补充的涌入的流星水 涌入(盐度升高并与其 含水层逐渐平衡),类似于形成白松 矿化作用的流体。该模型比单独使用metamorphogenic 模型具有多个优势。它将提供盐度(通过溶解 蒸发物)和适度的氧化条件(作为结果),从而使粗陆裂谷 变红,即变红。 >沉积物),这是铜运输所必需的,而由于 从大量的 < / sup>含水层。 的进一步减少也将解释 与脱赤血性的水硬铜矿和绿泥石为主的天然铜的上倾沉积(即, )热液矿物组合。同时, 从邻近 Keweenaw裂谷盆地的高地流入的陨石水将提供一种移动 深层的机制沿Portage Lake Volcanics的含水层 向上的浓热矿石盐水。从裂谷盆地的深部 上升,重力驱动的陨石盐水 会与埋藏变质产生的流体 混合在一起形成了杂化的演化的变质成矿成矿 热液盐水。

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  • 来源
    《Economic Geology》 |2006年第7期|1437-1444|共8页
  • 作者

    Alex C. Brown;

  • 作者单位

    Department of Civil, Geological and Mining Engineering, école Polytechnique de Montréal P.O. Box 6079, Sta. Centre-Ville, Montreal, Quebec, Canada H3C 3A7;

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