首页> 外文期刊>Acta Geologica Sinica >Genetic Mechanism of Mineral Inclusions in Zircons from the Khondalite Series, Southeastern Inner Mongolia
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Genetic Mechanism of Mineral Inclusions in Zircons from the Khondalite Series, Southeastern Inner Mongolia

机译:内蒙古东南部高棉岩系列锆石中矿物包裹体的成因机理

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The early Precambrian khondalite series is widely distributed in the Jining-Zhuozi-Fengzhen- Liangcheng area, southeastern Inner Mongolia. The khondalite series mainly consists of sillimanite garnet potash feldspar (or two-feldspar) gneiss and garnet biotite plagioclase gneiss. These gneissic rocks have commonly experienced granulite-facies metamorphism. In zircons separated from sillimanite garnet potash feldspar gneisses, many mineral inclusions, including Sil, Grt, Ky, Kfs, Qtz and Ap, have been identified by the Laser Raman spectroscopy. Generally, prograde metamorphic mineral inclusion assemblages such as Ky + Kfs + Qtz + Ap and Ky + Grt + Kfs + Qtz are preserved in the core of zircon, while peak granulite-facies metamorphic minerals including Sil + Grt + Kfs + Qtz and Sil + Grt + Kfs + Qtz + Ap are identified in the mantle and rim of the same zircon. However, in some zircons are only preserved the peak metamorphic minerals such as Sil + Grt + Kfs + Qtz and Sil + Grt + Kfs + Qtz + Ap from core to rim, and in others are inherited the primary cores with minor mineral inclusions of Kfs + Qtz, with peak metamorphic mineral inclusions around the inherited cores. These data indicate that the mineral assemblage evolution of sillimanite garnet potash feldspar gneisses in the study are did experience a polymorphic transformation of kyanite to sillimanite. In garnet biotite plagioclase gneisses, secondary electron microscopic images reveal that most zircons display distinct zoning textures, which comprise cores and rims, each with distinctive inclusion assemblages. The inherited mineral inclusions, mainly consisting of Kfs + Pl + Qtz, Kfs + Qtz and Kfs + Qtz + Ap, are preserved in the primary cores, while peak granulite-facies mineral asemblages, including Grt + Bt + Pl + Qtz + Ap, Grt + Bt + Pl + Qtz and Grt + Bt + Pl + Qtz + Rt, are identified on the rims. The occurrence of peak metamorphic mineral inclusions in zircons indicates that these gneissic rocks, including sillimanite garnet potash feldspar gneiss and garnet biotite plagioclase gneiss, have experienced granulite-facies metamorphism. Secondary electron microscopic images of zircons from the khondalite series display distinct zoning from core to rim, and are genetically related to the primary, prograde, and peak metamorphic mineral inclusion assemblages respectively. These images reveal irregular zoning patterns and varying thickness of cores and rims. The abundance of inclusions complicates the conventional U-Pb age dating. Therefore, the SHRIMP micro-spot U-Pb method is essential for the protolith and metamorphic age dating of the khondalite series, southeastern Inner Mongolia.
机译:早前寒武纪的膨润土系列广泛分布在内蒙古东南部的济宁-卓子-丰镇-凉城地区。 khondalite系列主要由硅线石石榴石钾长石(或两长石)片麻岩和石榴石黑云母斜长片麻岩组成。这些片麻岩岩石通常经历了花岗质相变质作用。在从硅线石石榴石钾长石片麻岩中分离出的锆石中,通过拉曼光谱法鉴定出许多矿物包裹体,包括硅、,、 t,K,K 、,和Ap。一般而言,锆石的核心中保留了Ky + Kfs + Qtz + Ap和Ky + Grt + Kfs + Qtz等渐进变质矿物包裹体组合,而包括Sil + Grt + Kfs + Kfs + Qtz和Sil + Grt + Kfs + Qtz + Ap位于同一锆石的地幔和边缘。然而,在某些锆石中仅保留了从岩心到边缘的峰值变质矿物,例如Sil + Grt + Kfs + Qtz和Sil + Grt + Kfs + Qtz + Ap + Qtz,在继承的岩心周围有峰值变质矿物包裹体。这些数据表明,研究中硅线石石榴石钾长石片麻岩的矿物组成演化确实经历了蓝晶石向硅线石的​​多晶型转变。在石榴石黑云母斜长片麻岩中,二次电子显微图像显示,大多数锆石显示出不同的分区纹理,包括核心和边缘,每个核心和边缘都有独特的内含物组合。遗留的矿物包裹体主要由Kfs + Pl + Qtz,Kfs + Qtz和Kfs + Qtz + Ap组成,保留在原始岩心中,而高峰粒岩相矿物组合包括Grt + Bt + Pl + Qtz + Ap,在轮辋上可以识别出Grt + Bt + Pl + Qtz和Grt + Bt + Pl + Qtz + Rt。锆石中变质矿物包裹体峰值的出现表明这些片麻质岩,包括硅线石石榴石钾长石片麻岩和石榴石黑云母斜长石片麻岩都经历了花岗质相变质作用。 khondalite系列锆石的二次电子显微图像显示了从核心到边缘的明显区域划分,并且分别与主要的,前进的和峰值的变质矿物包裹体组合遗传相关。这些图像揭示了不规则的分区模式以及芯线和轮辋的厚度变化。大量的夹杂物使常规的U-Pb年龄约会复杂化。因此,SHRIMP微点U-Pb方法对于内蒙古东南部的khondalite系列原生质体和变质年龄测年至关重要。

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