Granitoid characteristics of basement to the U-mineralized Bhima basin: Implications for crustal epizone processes

Sukanta Goswami , Shivam Shrivastava , Chanchal Sarbajna , Kusum Prakash , Dheeraj Pande , D.K. Choudhury
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Abstract

The Dharwar Craton (DC) is an archive containing a good proportion of ancient records of crustal evolution in its rocks. The greenstone-gneiss-migmatite and granitoid complex show significant variation in terms of time, space and mechanism of emplacement according to tectonics and geodynamic set up. The plutons of the northernmost part of Eastern Dharwar Craton (EDC) are especially recognizable from typical litho-structural attributes. The intensity of regional/burial metamorphism is negligible in these granitoids with versatile nature. Simple and composite plutons are demarcated on the basis of field association with distinguishable petro-mineralogy and geochemical characters. K-metasomatism in pluton is established from petrography with supportive geochemistry. Simple pluton is syenitic in nature unlike the composite plutons with lithological variation from Tonalite-Trondhjemite-Granodiorite (TTG) to alkali feldspar granite. The granitoids are developed from crustal melting during the plate convergence. Post-orogenic nature of syenite is indicated from geochemical data. The sharp contact between the plutons and country rocks indicates significant temperature difference between country rocks and emplaced magma. The characteristic features like brittle deformation dominated structures, sharp contact between emplaced plutons and country rocks, very low grade of regional metamorphism, intensely differentiated nature and absence of diatexitic migmatite indicate a shallow crustal depth of plutonic emplacement. Higher concentration of large ion incompatible elements (e.g., U, Th, K) and associated high heat production imply shallow crustal segment with rocks derived from evolved differentiated magma. The study indicates a depth less than 8 km and temperature condition less than 250°C which correspond to epizone, where uranium remobilization is facilitated.

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北马铀矿化盆地基底花岗岩类特征:地壳表带作用的启示
达尔瓦尔火山口(DC)是一个档案馆,其岩石中包含了大量地壳演化的古代记录。绿岩-片麻岩混合岩和花岗质杂岩在时间、空间和侵位机制方面根据构造和地球动力学设置表现出显著的变化。东部达尔瓦尔火山口(EDC)最北部的深成岩体从典型的岩石结构属性中尤其明显。在这些性质多样的花岗质岩石中,区域/埋藏变质作用的强度可以忽略不计。简单的和复合的深成岩体是根据具有可区分的岩石矿物学和地球化学特征的野外组合来划分的。深成岩体中的钾交代作用是由岩石学和支持性地球化学确定的。简单的深成岩体本质上是正长岩的,不同于岩性从方钠石-方钠长花岗岩-花岗质花岗岩(TTG)到碱长花岗岩变化的复合深成岩体。花岗质岩石是由板块会聚过程中的地壳熔融形成的。地球化学数据表明正长岩的造山后性质。深成岩体和围岩之间的剧烈接触表明围岩和侵位岩浆之间存在显著的温差。以脆性变形为主的结构、侵位的深成岩体与围岩之间的尖锐接触、极低级别的区域变质作用、强烈分化的性质以及不存在中脱矿混合岩等特征表明深成岩体侵位的地壳深度较浅。较高浓度的大离子不相容元素(如U、Th、K)和相关的高热产生意味着浅地壳段的岩石来源于演化的分化岩浆。该研究表明,深度小于8km,温度条件小于250°C,相当于表生带,在表生带中铀的再活化很容易。
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