首页> 外文期刊>Minerals >Geochronology of Hydrothermal Processes Leading to the Formation of the Au?¢????U Mineralization at the Rompas Prospect, Per???¤pohja Belt, Northern Finland: Application of Paired U?¢????Pb Dating of Uraninite and Re?¢????Os Dating of Molybdenite to the Identification of Multiple Hydrothermal Events in a Metamorphic Terrane
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Geochronology of Hydrothermal Processes Leading to the Formation of the Au?¢????U Mineralization at the Rompas Prospect, Per???¤pohja Belt, Northern Finland: Application of Paired U?¢????Pb Dating of Uraninite and Re?¢????Os Dating of Molybdenite to the Identification of Multiple Hydrothermal Events in a Metamorphic Terrane

机译:导致北部芬兰佩尔坡亚带隆帕斯探矿区形成金(Au)¢铀矿化的水热过程的年代学:铀矿和铀成对的Ub ¢ Pb定年的应用辉钼矿的Os定年对变质地层中多个热液事件的识别

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The Per???¤pohja belt comprises a greenschist to amphibolite facies; multiply-folded supracrustal sequence of quartzites; mafic volcanics; carbonate rocks; black shales; mica schists and greywackes deposited from ca. 2.44 Ga to 1.92 Ga; during protracted rifting of the Archaean basement. Metamorphism and multiple folding of the basin fill occurred during the Svecofennian orogeny (1.92?¢????1.80 Ga). The Rompas Au?¢????U mineralization is hosted within deformed and metamorphosed calcsilicate veins in mafic volcanics. Textural evidence suggests that deposition and periods of uraninite re-mobilization were followed by localized hydrocarbon-bearing fluid flow which produced pyrobitumen crusts around grains of uraninite. Gold precipitated during the latest hydrothermal event at around 1.75 Ga. In situ U?¢????Pb dating of uraninite by laser ablation inductively coupled mass spectroscopy (LA-ICP-MS), and Re?¢????Os dating of molybdenite, indicate that primary hydrothermal uranium mineralization forms two age clusters; about 2.03?¢????2.01 and 1.95?¢????1.94 Ga. Resetting of the U?¢????Pb system and precipitation of new generations of uraninite are associated with major deformation and metamorphic stages of the Svecofennian orogeny at 1.91?¢????1.89 Ga, 1.85 Ga, and 1.80 Ga. Gold deposition was synchronous with the emplacement of the 1.75?¢????1.78 Ga late/post-orogenic granitoids. The gold-producing hydrothermal event is also recorded by Re?¢????Os dating of molybdenite from the gold-bearing Mg-metasomatized metasedimentary and metavolcanic units at the Palokas prospect; a few kilometres from Rompas. Results of this study confirm that some domains in the structure of uraninite may preserve the original crystallization age, despite an overprinting amphibolite facies metamorphic and other hydrothermal events. The study supports the utility of in situ U?¢????Pb dating of uraninite and the ability of Re?¢????Os dating to assist in sorting out different hydrothermal events in areas with complex tectonic; magmatic and metamorphic histories.
机译:Per?pohja带包括绿片岩至闪石岩相。石英岩的多重褶皱地壳序列;镁铁质火山碳酸盐岩;黑色页岩云母片岩和灰w。 2.44 Ga至1.92 Ga;在古朴的地下室长时间裂痕中。在Svecofennian造山运动中(1.92≤1.8≤1.80Ga)发生了盆地充填的变质作用和多重折叠。 Rompas Au?¢ ?????? U矿化作用存在于镁铁质火山岩中变形和变质的钙硅酸盐脉中。结构上的证据表明,在进行铀矿的沉积和重新移动的时期之后,是局部的含烃流体流动,这在铀矿的颗粒周围产生了焦土壳。在最新的水热事件期间,金在1.75 Ga附近析出。通过激光烧蚀电感耦合质谱法(LA-ICP-MS)对铀矿的原位Ub ¢ Pb定年和Res ¢ Os定年辉钼矿的特征表明,初级热液铀矿化形成了两个年龄群;大约2.03 ¢ 2.01和1.95 ¢ 1.94Ga。Ub¢ Pb系统的复位和新一代尿素的沉淀与Svecofennian的主要变形和变质阶段有关。在1.91≤1.89Ga,1.85 Ga和1.80 Ga进行造山运动。金沉积与1.75≤1.78Ga晚期/造山后花岗岩的位置同步。在帕洛卡斯探矿区,Res ¢ Os的辉钼矿年代也记录了产金的热液事件,这些辉钼矿来自含金的Mg变质沉积的变质沉积和变火山岩单元。离Rompas几公里。这项研究的结果证实,尽管有叠印的角闪石相变质和其他热液事件,但铀矿结构中的某些区域仍可以保留原始的结晶年龄。该研究支持原位铀尿素的铅酸铀矿测年法的实用性和稀土钾氧矿测年法协助整理复杂构造地区不同水热事件的能力。岩浆和变质的历史。

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