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Zircon SHRIMP geochronology of the Xinkailing-Kele complex in the northwestern Lesser Xing'an Range, and its geological implications

机译:小兴安岭西北部新凯凌-克勒群的锆石SHRIMP年代学及其地质意义

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摘要

Located in the eastern portion of the Xing'an-Mongolian Orogcnic Belt (XMOB), the Xinkailing-Kele complex has previously been considered to he Precambrian metamorphic rocks, mainly according to its relatively high metamorphic grade. Our filed observation, however, revealed that the complex is composed mainly of mctamorphic rocks (Kele complex), tectono-schists ("Xinkailing Group"), and granitoids (Xinkailing granitic complex). Dating on these rocks using advanced SHRIMP zircon U-Pb technique indicates that: (1) Biotite-plagioclase gneiss from the Kele complex has a protolith age of 337±7 Ma (201 and a mctamorphic age of 216±3 Ma (2σ); (2) the tectono-schist of the "Xinkailing Group" gave a magmatic age of 292±6 Ma (2σ), indicative of felsic volcanic protolith of the schist formed in Late Paleozoic time; and (3) the Menluhedingzi and Lengchuan granites of the Xinkailing granitic complex were emplaced at 167±4 (2σ) and 164±4 Ma (2σ), respectively. These results suggest that the Xinkailing-Kele complex is not Precambrian metamorphic rocks and the so-called Precambrian "Nenjiang Block" does essentially not exist. In combination with regional geological data, we propose that the Kele metamorphic complex is likely related to a collisional tectonism that took place in Triassic time, as indicted by its metamorphic age of 216±3 Ma. The Xinkailing granitic complex was emplaced along the collisional zone during Mid-Jurassic time, likely in a post-orogenic or anorogenic setting.
机译:新凯凌-凯勒岩体位于兴安-蒙古古生物带(XMOB)的东部,以前被认为是前寒武纪变质岩,主要是根据其较高的变质等级。但是,我们的现场观察表明,该复合物主要由麦片岩(Kele复合物),构造片岩(“ Xinkailing Group”)和花岗岩(Xinkailing花岗岩复合物)组成。使用先进的SHRIMP锆石U-Pb技术对这些岩石进行测年表明:(1)来自Kele复杂岩的黑云母斜长片麻岩的原生岩时代为337±7 Ma(201,微晶时代为216±3 Ma(2σ)); (2)“新盖岭组”的构造片岩的岩浆年龄为292±6 Ma(2σ),表明在古生代晚期形成了片岩的片状火山原生岩;以及(3)孟鲁河顶子和冷川花岗岩结果表明,新开岭-科勒岩体不是前寒武纪变质岩,所谓的前寒武纪“嫩江块”基本上是167±4(2σ)和164±4 Ma(2σ)。结合区域地质资料,我们认为Kele变质体可能与三叠纪发生的碰撞构造有关,其变质年龄为216±3 Ma。七月中旬的碰撞带停产时间,可能发生在造山后或厌食期。

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