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Time constraints on magmatism, mineralisation and metamorphism at the Falun base metal sulphide deposit, Sweden, using U-Pb geochronology on zircon and monazite

机译:使用锆石和独居石的U-Pb年代学,对瑞典法伦贱金属硫化物矿床的岩浆,矿化和变质作用的时间限制

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U-Th-Pb (zircon and monazite) ion probe data have provided constraints on the timing of emplacement and metamorphism of magmatic rocks close to the Palaeoproterozoic, Falun base metal sulphide deposit in the Bergslagen lithotectonic unit, Fennoscandian Shield, Sweden, and, thereby the timing of mineralisation. Hydrothermal alteration and mineralisation at Falun are constrained to a short interval of several million years between a Pb-207/Pb-206 weighted average age of 1894 +/- 3 Ma for a rhyolitic sub-volcanic rock in the felsic volcanic to sub-volcanic host rock suite, and a Pb-207/Pb-206 weighted average age of 1891 +/- 3 Ma for a post-sulphide, porphyritic dacite dyke. Magmatism also included the emplacement of granite plutons with igneous crystallization ages of 1894 +/- 3, 1894 +/- 2 Ma and 1893 +/- 3 Ma. The felsic sub-volcanic to volcanic activity and the emplacement of dacite dykes and granite plutons overlap in age within their respective analytical uncertainties, indicating hydrothermal alteration and sulphide mineralisation inside a narrow time span of intense magmatic activity, and burial of the supracrustal rocks. Two distinct patchy and homogeneous metamorphic monazite types in a felsic volcanic rock around and hydrothermally altered rocks at the Falun deposit yield Pb-207/Pb-206 weighted average ages of 1831 +/- 8 Ma and 1822 +/- 5 Ma, respectively. These ages fall well within the temporal range of a younger 1.84-1.81 Ga (M-2) metamorphic episode during the 2.0-1.8 Ga Svecokarelian orogeny, with the older episode (M-1) inside the Bergslagen lithotectonic unit at around 1.86 Ga. This shows the major influence of the M-2 event in the north-western part of this unit, leading to a complete resetting of the U-Th-Pb isotope system in monazite. (C) 2016 Elsevier B.V. All rights reserved.
机译:U-Th-Pb(锆石和独居石)离子探针数据为靠近瑞典芬诺斯堪的亚贝格的贝格斯拉根岩相构造单元中的古元古代,法伦贱金属硫化物矿床附近的岩浆岩的侵入和变质时间提供了限制。矿化的时间。在长圆形火山岩到次火山岩的流纹岩下火山岩,Pb-207 / Pb-206加权平均年龄1894 +/- 3 Ma之间,法轮的热液蚀变和成矿作用被限制在几百万年的短时间内主机岩石套件,以及硫化后斑岩型达菲岩堤坝的Pb-207 / Pb-206加权平均年龄为1891 +/- 3 Ma。岩浆作用还包括花岗岩成岩岩体的沉积,火成岩年龄分别为1894 +/- 3、1894 +/- 2 Ma和1893 +/- 3 Ma。在它们各自的分析不确定性范围内,从次火山到火山活动的长英质次火山活动和菊苣岩堤和花岗岩岩体的位置在年龄上重叠,表明在强烈的岩浆活动的狭窄时间段内发生了热液蚀变和硫化物矿化,并且掩埋了上壳岩。在法轮矿床周围的长石质火山岩和热液蚀变的岩石中,有两种明显的斑块和均质变质独居石类型,其Pb-207 / Pb-206加权平均年龄分别为1831 +/- 8 Ma和1822 +/- 5 Ma。这些年龄恰好在2.0-1.8 Ga斯韦科卡雷利亚造山运动期间的年轻1.84-1.81 Ga(M-2)变质事件的时间范围内,而更老的事件(M-1)在1.86 Ga附近的Bergslagen岩相构造单元内。这显示了M-2事件在该单元西北部的主要影响,从而导致独居石中U-Th-Pb同位素系统的完全重置。 (C)2016 Elsevier B.V.保留所有权利。

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