首页> 外文期刊>Chinese science bulletin >Palaeoproterozoic Khondalite Belt in the western North China Craton: New evidence from SHRIMP dating and Hf isotope composition of zircons from metamorphic rocks in the Bayan Ul-Helan Mountains area
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Palaeoproterozoic Khondalite Belt in the western North China Craton: New evidence from SHRIMP dating and Hf isotope composition of zircons from metamorphic rocks in the Bayan Ul-Helan Mountains area

机译:华北克拉通西部的古元古代本田岩带:来自巴彦乌拉山地带变质岩的锆石的SHRIMP测年和Hf同位素组成的新证据

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Zircom U-Pb age and Hf isotope analyses were made on gneissic granite and garnet-mica two-feldspar gneiss from the Helanshan Group in the Bayan Ul-Helan Mountains area, the western block of the North China Craton (NCC). Zircons from the gneissic granite commonly show core-mantle-rim structures, with magmatic core, metamorphic mantle and rim having ages of 2323±20 Ma, 1923±28 Ma and 1856±12 Ma, respectively. The core, mantle and rim show similar Hf isotope compositions, with single-stage depleted mantle model ages (T_(DM1)) of 2455 to 2655 Ma (19 analyses). Most of the detrital zircons from the garnet-mica two-feldspar paragneiss have a concentrated U-Pb age distribution, with a weighted mean ~(207)Pb/~(206)Pb age of 1978±17 Ma. A few detrital zircons are older (2871 to 2469 Ma). The age for metamorphic overgrown rim was not determined because of strong Pb loss due to their high U content. The zircons show large variation in Hf isotope composition, with T_(DM1) ages of 1999 to 3047 Ma. In combination with previous studies, the main conclusions are as follows: (1) protolith of the khondalite series in the Helanshan Group formed during Palaeoproterozoic rather than the Archaean as previously considered; (2) The results lend support to the contention that there is a huge Palaeoproterozoic Khondalite (metasedimentary) Belt between the Yinshan Mountains Block and the Ordos Block in the Western Block of NCC; (3) The widely-distributed bodies of early Palaeoproterozoic orthogneisses in the Khondalite Belt might be one of the important sources for detritus material in the khondalite series; (4) Collision between the Yinshan Block, the Ordos Block and the Eastern Block occurred in the same tectonothermal event of late Palaeoproterozoic, resulting in the final assembly of the NCC.
机译:在华北克拉通(NCC)西部区块巴彦乌拉山地区的贺兰山群中,对片麻岩花岗岩和石榴石-云母两长石片麻岩进行了锆石U-Pb年龄和Hf同位素分析。片麻岩花岗岩中的锆石通常表现出岩心-幔-缘结构,岩浆岩芯,变质幔和边缘的年龄分别为2323±20 Ma,1923±28 Ma和1856±12 Ma。岩心,地幔和边缘显示出类似的f同位素组成,单阶段耗尽的地幔模型年龄(T_(DM1))为2455至2655 Ma(19次分析)。石榴石-云母两长石paragneiss的大部分碎屑锆石具有集中的U-Pb年龄分布,加权平均〜(207)Pb /〜(206)Pb年龄为1978±17 Ma。一些碎屑锆石年龄较大(2871至2469 Ma)。由于U含量高导致Pb大量流失,因此未确定变质长满的轮辋的年龄。锆石的Hf同位素组成变化很大,T_(DM1)年龄为1999年至3047 Ma。结合以前的研究,主要结论如下:(1)古元古代而不是以前考虑的古生界形成的贺兰山群中的辉长岩系列的原生石; (2)结果支持以下论点:在NCC西部地块的阴山山脉地块和鄂尔多斯地块之间有一条巨大的古元古代本田岩(中期沉积)带; (3)宽达岭带早古元古代正片麻岩的广泛分布可能是高岭岩系列碎屑物质的重要来源之一; (4)阴山块,鄂尔多斯块与东部块之间的碰撞发生在古元古代晚期的同一构造热事件中,导致了NCC的最终组装。

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