首页> 外文期刊>International Journal of Earth Sciences >Petrography, geochemistry, and U–Pb geochronology of pegmatites and aplites associated with the Alvand intrusive complex in the Hamedan region, Sanandaj–Sirjan zone, Zagros orogen (Iran)
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Petrography, geochemistry, and U–Pb geochronology of pegmatites and aplites associated with the Alvand intrusive complex in the Hamedan region, Sanandaj–Sirjan zone, Zagros orogen (Iran)

机译:伟哥岩和棉岩的岩石学,地球化学和U–Pb年代学,与Zagros造山带(伊朗)的Hamedan地区,Sanandaj–Sirjan地区的Alvand侵入复合体有关

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Abstract The Alvand intrusive complex in the Hamedan area in Iran is in the Sanandaj–Sirjan zone of the Zagros orogen. It consists of a wide range of plutonic rocks, mainly gabbro, diorite, granodiorite, granite, and leucogranites that were intruded by aplitic and pegmatitic dykes. At least three successive magmatic episodes generated an older gabbro–diorite–tonalite assemblage, followed by a voluminous granodiorite–granite association, which was then followed by minor leucocratic granitoids. Aplitic and pegmatitic dykes and bodies have truncated both plutonic rocks of the Alvand intrusive complex and its metamorphic aureole. Chemically they belong to peraluminous LCT (Li-, Cs-, and Ta-bearing) family of pegmatites. Mineralogically, they resemble Muscovite (MS) and Muscovite Rare Element (MSREL) classes of pegmatites. High amounts of some elements, such as Sn (up to 10,000 ppm), Rb (up to 936 ppm), Ba (up to 706 ppm), and LREE (up to 404 ppm) indicate the highly fractionated nature of some of these aplites and pegmatites. U–Pb dating of monazite, zircon, and allanite by LA-ICPMS indicate the following ages: monazite-bearing aplites of Heydareh-e-Poshteshahr and Barfejin areas, southwest of Hamedan, give an age range of 162–172 Ma; zircon in Heydareh-e-Poshteshar gives an average age of ~165 Ma and for allanite-bearing pegmatites of Artiman area, north of Tuyserkan, an age of 154.1 ± 3.7 Ma was determined. These overlap with previously reported ages (ca. 167–153 Ma) for the plutonic rocks of the Alvand complex. Therefore, these data reveal that the Jurassic was a period of magmatism in the Hamedan region and adjacent areas in the Sanandaj–Sirjan zone, which was situated at the southern edge of the central Iranian micro-plate (southern Eurasian plate) at this time. Our results also suggest that advective heating in a continental arc setting has caused melting of fertile supracrustal lithologies, such as meta-pelites. These partial melts were then emplaced at much higher crustal levels, but within a thermally anomalous environment, which, therefore, leads to formation of evolved felsic rocks, such as the studied LCT aplite–pegmatite suite and their parental granitic rocks. This is a new result that indicates the role of syn-subduction crustal partial melting in the region as part of Zagros orogeny.
机译:摘要伊朗哈马丹地区的Alvand侵入复合体位于Zagros造山带的Sanandaj–Sirjan带。它由各种各样的深成岩构成,主要是辉长岩,闪长岩,花岗岩,花岗闪长岩,花岗岩和白云岩,这些岩体由顶生岩层和古卷岩脉侵入。至少三个连续的岩浆事件产生了较老的辉长岩-闪长岩-tonalite组合,然后是大量的花岗闪长岩-花岗岩组合,然后是次要的白垩纪花岗岩。顶生岩体和古成岩岩体已经截断了Alvand侵入复合体的深成岩及其变质的金质。在化学上,它们属于伟晶石的钙质LCT(Li,Cs和Ta含钙)族。在矿物学上,它们类似于伟晶岩的白云母(MS)和白云母的稀土元素(MSREL)类。某些元素的大量存在,例如Sn(最高10,000 ppm),Rb(最高936 ppm),Ba(最高706 ppm)和LREE(最高404 ppm)表示其中一些单元的高度分离性质和伟晶岩。 LA-ICPMS对独居石,锆石和尿囊石的U–Pb测年表明以下年龄:在哈马丹西南部的Heydareh-e-Poshteshahr和Barfejin地区含独居石的年龄范围为162-172Ma。 Heydareh-e-Poshteshar中的锆石平均年龄为165Ma,而Tuyserkan以北Artiman地区的含尿石伟晶岩的年龄确定为154.1±3.7 Ma。这些与先前报道的Alvand复杂岩体的年龄重叠(约167-153Ma)。因此,这些数据表明,侏罗纪是哈马丹地区和Sanandaj–Sirjan地区邻近地区的岩浆作用时期,此时该地区位于伊朗中部微板块(欧亚南部板块)的南部边缘。我们的研究结果还表明,大陆弧环境中的对流加热导致肥沃的上壳岩性融化,例如变质白云母。然后将这些部分熔体放置在更高的地壳高度,但处于热异常环境中,因此导致形成了长英质岩石,例如研究的LCT磷灰石-斜辉石套件及其母体花岗岩。这是一个新的结果,表明该地区俯冲俯冲地壳部分融化是Zagros造山作用的一部分。

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