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On the Relationship Between Alteration Facies and Metal Endowment of Iron Oxide-Alkali-Altered Systems, Southern Great Bear Magmatic Zone (Canada)

机译:南部大熊岩浆区(加拿大)的氧化铁-碱蚀变体系的蚀变相与金属End赋的关系

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The Great Bear magmatic zone in northern Canada hosts large iron oxide and alkali-altered systems that developed within a 10-m. y. period during the Paleoproterozoic. In the Eastern Treasure Lake and Duke sectors, and at the NICO deposit, early albitization associated with magmatism was followed by tungsten mineralization that was spatially associated with extensive skarn and Fe skarn alteration. Subsequent fluid-rock reactions led to substantial iron enrichment that culminated in iron oxide-apatite mineralization. At the transition from compressional/ transpressional to extensional/transtensional stress regimes, changes in magma composition increased the metal budget of exsolved magmatic-hydrothermal fluids and played a key role in the formation of Au-Co-Bi mineralization at the NICO deposit and its satellite showings in the Duke zone. This process happened as the systems regionally transitioned to magnetite-bearing, potassic-iron alteration. The continued evolution of magmatism and fluid chemistry then contributed to the formation of iron oxide-copper-gold (IOCG) and variant mineralized zones in the Sue-Dianne and NICO deposits and other showings, and albite-hosted uranium mineralized zones elsewhere. The Great Bear magmatic zone illustrates that the evolution of magmatically derived fluids during a transition between different stress regimes can play a significant role in metal endowment and the ability of metasomatic systems to form skarn, iron oxide-apatite, IOCG, and albitite-hosted uranium mineralization.
机译:加拿大北部的大熊岩浆带拥有大型的氧化铁和碱蚀系统,这些系统在10米之内发展。 y。古元古代。在东部金银湖和杜克地区,以及在NICO矿床,与岩浆作用有关的早期矿化作用之后是钨矿化作用,而钨矿化作用在空间上与广泛的矽卡岩和铁矽卡岩蚀变有关。随后的流体-岩石反应导致大量铁富集,最终导致氧化铁-磷灰石矿化。在从压缩/超压向拉伸/超压应力过渡的过程中,岩浆成分的变化增加了溶解岩浆-热液的金属收支,并在NICO矿床及其卫星的Au-Co-Bi矿化形成中发挥了关键作用。在杜克区的放映。这个过程发生在系统向区域性过渡到含磁铁矿,钾铁变质的过程中。岩浆作用和流体化学的不断发展,继而在Sue-Dianne和NICO矿床及其他矿床中形成了氧化铁-铜-金(IOCG)和变质矿化带,并在其他地方形成了由钠长石包裹的铀矿化带。大熊岩浆带表明,在不同应力状态之间过渡期间,岩浆衍生的流体的演化可以在金属赋形以及变质系统形成矽卡岩,氧化铁-磷灰石,IOCG和方铁矿型铀的能力中发挥重要作用。矿化。

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