首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Origin, ore forming fluid evolution and timing of the Logrosan Sn-(W) ore deposits (Central Iberian Zone, Spain)
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Origin, ore forming fluid evolution and timing of the Logrosan Sn-(W) ore deposits (Central Iberian Zone, Spain)

机译:Logrosan Sn-(W)矿床的成因,成矿流体演化和时间(西班牙伊比利亚中部地区)

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The Logrosan Sn-(W) ore deposits in the metallogenic Sn-W province of the European Variscan Belt consist of endo- and exogranitic greisen-type and quartz-cassiterite veins associated with a S-type granite. Mineral characterization, fluid inclusion study, isotope geochemistry and Ar-Ar geochronology have been combined in order to reconstruct the conditions for Sn-(W) mineralization. The endo- and exogranitic mineralization must have been developed in a relatively long-lived system (similar to 308-303 Ma), during or soon after the emplacement of the Logrosan related-granite (at ca. 308 Ma). The mineralizing fluids are characterized by complex aqueous and volatile (H2O-N-2-CO2-CH4-NaCl) fluid inclusions. Microthermometry and Raman analyses indicate that fluid composition evolved from N-2-CH4 to N-2-rich, followed by CO2-rich fluids, with varying amounts of H2O. The presence of N-2 and CH4 suggests the interaction with fluids derived from the nearby metasedimentaiy host rocks. A model of host-rock interaction, assimilation, and mixing of metamorphic and magmatic fluids, resulting in change of the redox conditions, is proposed for tin deposition. Later sulfide minerals were precipitated as a result of pressure and temperature release. (C) 2015 Elsevier B.V. All rights reserved.
机译:欧洲瓦里斯卡纳带成矿锡-钨省的洛格罗桑锡-(W)矿床由与S型花岗岩相关的内生和外生格里森型和石英锡石脉组成。矿物特征描述,流体包裹体研究,同位素地球化学和Ar-Ar地球年代学相结合,以重建Sn-(W)矿化的条件。在洛格罗桑相关花岗岩的埋置期间或之后(大约308 Ma),必须在相对长寿的系统(类似于308-303 Ma)中开发出内生和外生矿化作用。矿化流体的特征在于复杂的含水和挥发性(H2O-N-2-CO2-CH4-NaCl)流体包裹体。显微热分析和拉曼分析表明,流体成分从N-2-CH4演变成N-2-rich,然后是富含CO2的流体,其中H2O的含量不同。 N-2和CH4的存在表明与附近变质沉积宿主岩石中的流体相互作用。提出了一种基质-岩石相互作用,同化作用和变质流体与岩浆流体混合,从而导致氧化还原条件发生变化的模型,用于锡沉积。由于压力和温度释放,后来的硫化物矿物沉淀。 (C)2015 Elsevier B.V.保留所有权利。

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