首页> 外文会议>Biennial SGA-SEG meeting >Magmatic fluids and skarn mineralization: the Burdigalian As-W skarn at Karezas (Edough Massif, NE Algeria)
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Magmatic fluids and skarn mineralization: the Burdigalian As-W skarn at Karezas (Edough Massif, NE Algeria)

机译:岩浆液体和矽卡岩矿化:Karezas的Burdigalian As-W Skarn(Edouge Massif,Ne Algeria)

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The tungsten mineralization at Karezas resulted from the overprinting of a first generation of reducing, barren skarn, by a series of hydrothermal fluids with a strong magmatic fingerprint, leading to the formation of the fluorite-scheelite-loellingite-Li-micas association typical of the second generation of "greisenised" skarn. The former skarn probably resulted from high-temperature fluid-rock interactions at the end of the tec-tonothermal event responsible of the emplacement of the Edough metamorphic core complex. The latter skarn is likely related to the shallow-level emplacement of a highly specialised granite cupola and the unmixing a Li-F-As-W-rich magmatic fluid. This fluid, in turn, underwent a complex history of phase separation and mixing with metamorphic-derived fluids enriched in CH_4 and N_2, eventually leading to the deposition of scheelite.
机译:Karezas的钨矿化是由第一代还原,贫瘠矽卡岩,由一系列具有强大的岩石指纹的水热流体的第一代减少,导致典型的萤石 - 白皮矿 - 稀释物 - Li-MICAS关联的形成第二代“精选”矽卡车。前者斯巴尔可能是由高温流体岩相互作用,在TEC-色调事件结束时负责中间槽变质核心复合物的施加。后者矽卡斯斯巴尔可能与高度专业的花岗岩圆顶和富含富型富型岩浆流体的浅层施加有关。该流体又逐一的相分离历史,并与富含CH_4和N_2的变质衍生的流体混合,最终导致硅藻土沉积。

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