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首页> 外文期刊>Mineralogy and Petrology >U-Cr-rich high Mg-Al granulites from Karimnagar Granulite Belt, India: implications for Neoarchean-Paleoproterozoic events in southern India
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U-Cr-rich high Mg-Al granulites from Karimnagar Granulite Belt, India: implications for Neoarchean-Paleoproterozoic events in southern India

机译:印度Karimnagar花岗岩带中富含U-Cr的高Mg-Al花岗岩:对印度南部新古宙古古生界事件的影响

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High Mg-Al granulite occurs as enclave within granite gneisses at Karimnagar, southern India, and it contains coarse granoblastic aggregates of orthopyroxene and sapphirine with minor amount of cordierite, spinel and phlogopite. An important chemical characteristic of these minerals is their extremely high MgO content and the high Cr_2O_3 in sapphirine and spinel. Textural analysis shows sapphirine + orthopyroxene + cordierite as the peak-metamorphic assemblage that possibly evolved though the breakdown of a spinel-bearing assemblage. Cation exchange geothermometers involving orthopyroxene, sapphirine and spinel yield temperatures of 600-800 °C with a maximum of 860 °C implying an event of high temperature (HT) metamor-phism. Pseudosection analysis in the FeO-MgO-Al_2O_3-Si02 chemical system shows the stability of the peak- assemblage below 6.2 kbar. Subsequently, the rock underwent hydration and cooling with the appearance of phlogopite in the assemblage. Chromium enrichment is possibly inherited from the protolith and its presence presumably stabilized sapphirine and spinel below their high-temperature stability field. The recorded Rb-Sr age of ca. 2,500 Ma in host granite gneiss marks the upper age limit of HT metamorphism. Presence of patchy, lobate grains as well as veinlets of uraninite and brannerite is also a characteristic feature of the rock. Uranium mineralization took place during the post peak metamorphic stage, sulfide mineralization represented by tiny grains and veinlets of pyrite, millerite and pentlandite coincided with, and outlasted the uranium mineralization. The U-Th-Pb chemical ages of uraninite grains suggest ca. 2,200±12 Ma for the age of uranium mineralization in the granulite. Based on the field relations, it is surmised that the granulite metamorphism in the study area is older than ca. 2,500 Ma and is comparable with an event in the other parts of Eastern Dharwar Craton. It can be conceived as a widespread event in southern India.
机译:高Mg-Al麻粒岩在印度南部Karimnagar的花岗岩片麻岩中以飞地形式存在,它含有邻苯二甲酚和蓝宝石的粗粒状聚集体,以及少量的堇青石,尖晶石和金云母。这些矿物的重要化学特征是其极高的MgO含量以及蓝宝石和尖晶石中的高Cr_2O_3。结构分析表明,蓝宝石+邻苯二茂铁+堇青石为峰变质组合,可能是由于含尖晶石的组合分解而形成的。涉及邻苯二酚,蓝宝石和尖晶石的阳离子交换地热仪的温度为600-800°C,最高温度为860°C,这意味着发生高温(HT)变质现象。 FeO-MgO-Al_2O_3-SiO2化学系统中的伪截面分析显示,峰组装在6.2 kbar以下具有稳定性。随后,岩石经历水化和冷却过程,在组合中出现金云母。铬的富集可能是从原石继承而来的,其存在可能在其高温稳定性场以下稳定了蓝宝石和尖晶石。记录的大约Rb-Sr年龄。寄主花岗岩片麻岩中的2500 Ma标志着HT变质的年龄上限。斑片状的,小叶状的颗粒以及铀矿和褐铁矿的细纹的存在也是岩石的特征。铀矿化发生在后顶峰变质期,以黄铁矿,Millerite和膨润土的细小晶粒和细矿为代表的硫化物矿化与铀矿化相吻合,并且比铀矿化更持久。铀矿颗粒的U-Th-Pb化学年龄提示花岗岩中铀矿化年龄为2,200±12 Ma。根据田间关系,推测研究区的花岗石变质作用年龄大于ca。 2500毫安,可与东部达沃克拉通其他地区发生的事件相提并论。它可以被认为是印度南部的一个普遍事件。

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