首页> 外文期刊>Gondwana research: international geoscience journal >U-pb ages and hf-o isotopes of zircons from late paleozoic mafic-ultramafic units in the southern central asian orogenic belt: Tectonic implications and evidence for an early-permian mantle plume
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U-pb ages and hf-o isotopes of zircons from late paleozoic mafic-ultramafic units in the southern central asian orogenic belt: Tectonic implications and evidence for an early-permian mantle plume

机译:中亚南部造山带晚古生代镁铁质-超镁铁质单元锆石的U-pb年龄和hf-o同位素:构造意义和早二叠世地幔柱的证据

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U-Pb age and Hf-O isotope data of zircons from the mafic-ultramafic complexes and their related rhyolites and granites in the Eastern Tianshan and Beishan regions were obtained by SIMS and LA-ICPMS. The Hf-O isotopic composition and Hf model age of the zircons are closely related to their tectonic setting and formation age. The zircons from the mafic-ultramafic complexes in the Bogeda-Haerlike and Jueluotage belts have higher ε_(Hf)(t) (+8-+17) and lower δ~(18)O (+4‰-+6‰), whereas most of the zircons in the gabbros, granites and rhyolite from the Middle Tianshan Massif and Beishan Rift display lower ε_(Hf)(t) (0-+8) and higher ε~(18)O (+5‰-+8‰). The positive ε_(Hf)(t) and relatively lower δ~(18)O values suggest that these mafic-ultramafic complexes were derived from depleted mantle which was subjected to subduction-related modification processes. The Hf isotopic composition of zircons in the granites has revealed that the growth of juvenile crust was also very significant in the southern margin of the Central Asian Orogenic Belt during the Paleozoic. The Hf model ages of the analyzed zircons, together with the regional geology suggest that the Beishan area had a northward subduction, possibly from ca. 900Ma to ca. 400Ma, whereas the Eastern Tianshan had a south-directed subduction most likely from ca. 600Ma to ca. 310Ma. Additionally, zircons with ca. 280Ma U-Pb ages display wider and more scattered ε_(Hf)(t) and δ~(18)O variations than the relatively older and younger ones, which further support the Early Permian mantle plume model.
机译:利用SIMS和LA-ICPMS获得了天山东部和北山地区镁铁质-超镁铁质配合物及其相关流纹岩和花岗岩中锆石的U-Pb年龄和Hf-O同位素数据。锆石的Hf-O同位素组成和Hf模型年龄与其构造背景和形成年龄密切相关。来自Bogeda-Haerlike和Jueluotage带的镁铁质-超镁铁质复合物中的锆石具有较高的ε_(Hf)(t)(+ 8- + 17)和较低的δ〜(18)O(+4‰-+ 6‰),而天山中段和北山裂谷的辉长岩,​​花岗岩和流纹岩中的大多数锆石显示出较低的ε_(Hf)(t)(0- + 8)和较高的ε〜(18)O(+5‰-+ 8 ‰)。正ε_(Hf)(t)和相对较低的δ〜(18)O值表明,这些镁铁质-超镁铁质复合物是从贫化地幔中衍生出来的,地幔经历了俯冲相关的修饰过程。花岗岩中锆石的Hf同位素组成表明,古生代期间中亚造山带南缘的幼年地壳生长也非常显着。分析的锆石的Hf模型年龄以及区域地质表明北山地区可能向北俯冲。 900Ma至大约400Ma,而东天山有一个南向的俯冲,很可能是在大约40年。 600Ma至大约310Ma。此外,锆石约280Ma的U-Pb年龄比较年轻和较年轻的年龄表现出更宽,更分散的ε_(Hf)(t)和δ〜(18)O变化,这进一步支持了早二叠纪地幔柱模型。

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