首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Shoshonitic magmatism in the Paleoproterozoic of the south-western Siberian Craton: An analogue of the modern post-collision setting
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Shoshonitic magmatism in the Paleoproterozoic of the south-western Siberian Craton: An analogue of the modern post-collision setting

机译:西伯利亚西北古典古古典古古典古典主义者:现代碰撞环境的模拟

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The Siberian Craton was assembled in a Paleoproterozoic episode at about 1.88 Ga by the collision of older blocks, followed at about 1.86 Ga by post-collisional felsic magmatism. We have found a set of extremely fresh mica bearing lamprophyre-looking rocks within the Sharyzhalgay metamorphic complex of the south-western Siberian Craton. Zircon from these rocks yields a U-Pb TIMS age of 1864.7 +/- 1.8 Ma, which coincides perfectly with the peak of the post-collisional granite ages and postdates by similar to 15 Ma the peak of ages obtained for metamorphism. The same ages were reported earlier for a mafic dyke with ocean island basalt (OIB) geochemical signatures and a Pt-bearing mafic-ultramafic intrusion found in the same region. Mineralogy, major and trace element geochemistry and Sr-Nd-Pb isotopes show that the studied rocks (1) have shoshonitic affinity, (2) are hybrid rocks with mineral assemblages which could not be in equilibrium, (3) where derived by recycling of an Archean crustal source and (4) resemble post-collision Tibetan shoshonitic series. The genesis of these rocks is considered to be due to melting of crustal lithologies and metasomatized lithospheric mantle within a subducted slab. Some of the resulting melts ascended through the lithospheric column and fractionated to low-Mg absarokites, whereas other melts were contaminated by orthopyroxenitic mantle material and attained unusual high-Mg mafic compositions. According to our model, the post-collisional magmatism (shoshonite- and 018-type) occurred due to upwelling of hot asthenosphere through a slab window, when the active collision ceased as a result of the slab break off and loss of the slab pull force. Overall, our study shows that in the Paleoproterozoic shoshonitic melts were emplaced within a similar tectonic setting as seen today in modem orogenic systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:西伯利亚CRATON在古老块的碰撞下在大约1.88GA的古普罗佐奇集中组装在古木政府杂志集中,随后通过碰撞后肠道岩浆广告约1.86克。我们发现了一套极其新鲜的云母轴承兰普利,在西南西伯利亚西伯利亚克拉顿的Sharyzhalgay变质综合体内。来自这些岩石的锆石产生了1864.7 +/- 1.8 mA的U-PB ite岁,这与碰撞后花岗岩峰值的峰值完全一致,并且通过类似于15 mA的变质所获得的年龄的峰值。同样的年龄早些时候报道了海岛玄武岩(OIB)地球化学签名和患有在同一地区的PT-ubiC-Ultramafic入侵。矿物学,主要和痕量元素地球化学和SR-ND-PB同位素表明,研究的岩石(1)具有旋流性亲和力,(2)是含有矿物组合的混合岩,(3)通过回收来源Archean Clustal Source和(4)类似于碰撞后藏族湿润系列。这些岩石的成因被认为是由于地壳岩性的熔化和弥扑岩石化的岩屑内的岩屑。由此得到的一些熔体通过岩石柱上升并分馏至低mg缺乏岩,而其他熔体被闭塞式露石材料污染并获得了不寻常的高Mg Mafic组合物。根据我们的模型,当由于板坯断开和损失板坯拉力而停止时,由于板坯窗口的较高的近距离升高而发生了碰撞后岩浆岩石(Shoshonite-and 018型)。 。总体而言,我们的研究表明,在古典古代湿润的沼泽中,在当今在调制解调器造山系统中看到的类似构造环境中被施加。 (c)2019年Elsevier B.V.保留所有权利。

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