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Early Proterozoic granitoids of the Olenek complex (northern Siberian craton): petrogenesis and geodynamic setting

机译:奥兰人复合体的早期正古代花岗岩(西伯利亚北部CRATON):纤维化和地球动力学环境

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The paper deals with geological and geochemical studies of granitoids of the Olenek complex in the Olenek uplift of the basement of the northern Siberian craton. The age of these granitoids was earlier estimated at 2036 +/- 11 Ma. The granitoids of the Olenek complex correspond in composition to high-alumina quartz diorites, granites, and leucogranites of the normal petrochemical series. According to geochemical and mineralogical characteristics, the quartz diorites can be assigned to granites of the transitional I-S type, and the granites and leucogranites, to S-type granites. The epsilon(Nd)(T) values in the granites of the Olenek complex vary from -0.2 to +1.4, and the Nd model age is 2.4-2.5 Ga. The quartz diorite is characterized by epsilon(Nd)(T) = +3.0 and a Nd model age T(DM) = 2.2 Ga. The geochemical characteristics of the granites and leucogranites indicate their formation through the melting of a source of graywacke composition, whereas the quartz diorites resulted, most likely, from the mixing of granitic and basaltic melts. The fact that the granitoids of the Olenek complex intruded the folded rocks of the Eekit Formation but stay virtually undeformed massive bodies suggests that they formed at the postdeformation stage of the regional evolution after the completion of the Paleoproterozoic orogenic events. The intrusion of granitoids marks the completion of the formation of the Early Proterozoic Eekit fold belt on the western (in the recent coordinates) margin of the Birekta terrane of the Olenek superterraine and the final formation of the superterrane structure. At the next stage of magmatism (1.98-1.96 Ga), best pronounced in the uplifts of the basement of the northern Siberian craton, all terranes forming the Anabar and Olenek superterranes assembled into a single structure. (C) 2018, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:本文涉及北西伯利亚峡谷地下室玉米蛋白隆起的地质和地球化学研究。这些花岗岩的年龄早期估计在2036 +/- 11 mA。桉树糖综合体的花岗岩对应于高氧化铝石英二流星,花岗岩和正常石化系列的leucogranites的组合物。根据地球化学和矿物学特性,可以将石英迪斯分配给过渡I-S型的花岗岩,以及花岗岩和leucogranites,对S型花岗岩。 Olenek复合物的花岗岩中的ε(nd)(t)值在-0.2至+1.4之间变化,Nd模型年龄为2.4-2.5 ga。石英二官岩的特征在于ε(nd)(t)= + 3.0和ND模型时代T(DM)= 2.2 Ga。花岗岩和leucogranites的地球化学特性表明它们通过灰尘源的熔化形成,而石英蒂斯导致,最有可能从花岗岩的混合中产生。玄武岩融化。桉树复合物的折叠岩石的折叠岩石的折叠岩石的折叠岩石,但保持几乎未变形的巨大体,表明它们在完成古普罗佐的造山虫事件完成后在区域演变的后级阶段形成。沉积物的侵入标志着形成早期的Elartrozoice Eekit折叠带的形成(在近期坐标)边缘的Olenek SuperTerraine的Birekta Terrane的边缘和超萜结构的最终形成。在Magmatism(1.98-1.96 GA)的下一阶段,在西伯利亚北部地下室的隆起中最好明显,所有地铁形成Anabar和Olenek Supertranes组装成一个结构。 (c)2018,五。 Sobolev IgM,Ras的西伯利亚分支。 elsevier b.v出版。保留所有权利。

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