Archean Metallogeny and Crustal Evolution in the East Indian Shield

T. K. Baidya
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引用次数: 11

Abstract

East Indian Shield bears the evidences of Archean metallogenic and crustal evolution like the other major shield areas of the world. The primordial continental crust in the form of more silicic bodies were floating like metallurgical slags over the hotter and denser ultramafic-mafic lithosphere (UM-ML) before 3800 Ma. Earliest sediments, now represented by the Older Metamorphic Group (OMG) , were deposited in small basins the basement of which was made of UM-ML containing rafts of primitive silicic bodies. Possibly the earliest greenstone rocks (some banded iron formation, associated high-Mg basalts and ultramafics) formed in the OMG with deformation and metamorphism continued upto about 3500 Ma. Partial melting of the lower amphibolitic crust due to underplating and asthenospheric sagging formed the tonalitic magma around 3500 Ma (Older Metamorphic Tonalitic Gneiss or OMTG) and subsequently Singhbhum Granite Type-A (Phase-I and Phase-II) around 3300 Ma both of which intruded the folded and metamorphosed OMG rocks. The major event of greenstone belt formation took place during 3500-3200 Ma both in the eastern part and in the western part of the Singhbhum granitic craton. The general trend of these two greenstone belts is NNE-SSW and they were the repositories of the Iron Ore Group (IOG) sediments, volcanics and ultrmafic-mafic rocks. The IOG rocks formed prolific mineralization of Fe,Mn,Cr,Ti,Cu,Ni,Au and platinum group elements(PGE). Multiple phases of tectonism and partial melting of crustal materials ultimately led to the formation of Singhbhun Granite Type-B (Phase-III) around 3100 Ma which later intruded the folded and metamorphosed IOG rocks. From 3000 to 2500 Ma cratonization of the East Indian Shield formed the batholitic mass of Singhbhum granitic complex at the central part with the greenstone belts on either side. Around 2500 Ma the Singhbhum craton became tectonically active again with the formation of three mobile belts – Dalma in the north, Dhanjori-Simlipal in the east and Jagannathpur-Malangtoli in the west.The sediments and lavas of these mobile belts are the major resources of Proterozoic Fe, Ti, Au, U, P, Cu, Pb, Mo, W and Ni mineralization
东印度盾太古代成矿作用与地壳演化
东印度盾与世界上其他主要盾区一样,具有太古宙成矿和地壳演化的证据。在3800 Ma之前,原始大陆地壳以更多硅酸体的形式像冶金渣一样漂浮在温度更高、密度更大的超镁铁质岩石圈(UM-ML)上。最早的沉积,现在以老变质群(OMG)为代表,沉积在小型盆地中,其基底由UM-ML构成,其中含有原始硅酸体筏体。可能最早的绿岩(一些带状铁组,伴生的高镁玄武岩和超镁铁质)形成于OMG,变形变质作用持续到3500 Ma左右。下角闪质地壳的部分熔融作用和软流圈的下沉作用形成了3500 Ma左右的调性岩浆(老变质调性片麻岩或OMTG)和3300 Ma左右的Singhbhum花岗岩a型(一期和二期),它们侵入了褶皱变质的OMG岩。兴兴花岗岩克拉通东部和西部的绿岩带形成主要发生在3500 ~ 3200 Ma。这两条绿岩带总体走向为北北东—南南西,是铁矿群(IOG)沉积物、火山岩和超基性—基性岩的储藏库。IOG岩石形成了丰富的Fe、Mn、Cr、Ti、Cu、Ni、Au和铂族元素(PGE)矿化。经过多期构造作用和地壳物质的部分熔融作用,最终在3100 Ma左右形成了兴顺b型花岗岩(iii期),并侵入褶皱变质的IOG岩。3000 ~ 2500 Ma的东印度盾克拉通作用形成了中部的Singhbhum花岗岩杂岩岩浆岩块体,两侧为绿岩带。2500 Ma左右,Singhbhum克拉通再次变得构造活跃,形成了三个活动带——北部的Dalma,东部的Dhanjori-Simlipal和西部的Jagannathpur-Malangtoli。这些活动带的沉积物和熔岩是元古代Fe、Ti、Au、U、P、Cu、Pb、Mo、W和Ni矿化的主要资源
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