Geochemistry and detrital zircon geochronology of Khammam Schist Belt, Eastern Dharwar Craton: Implication for India – North China Craton –Antarctica connection in Paleo-Mesoproterozoic crustal assembly

Ab Majeed Ganaie, Kausik Satpathi, Sayonjyoti Beura, Pritam Nasipuri
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Abstract

This communication reports the results of geochemical investigations and detrital zircon geochronology of metasediments of the Khammam Schist Belt that occur at the trijunction of the Eastern Dharwar Craton–Bastar Craton–Eastern Ghats Belt. Biotite (XMg = 0.46–0.52) and muscovite (Si atom per formula unit (apfu) of 11 O = 3.08–3.17) with alkali-feldspar constitute the mineralogy of studied samples. The Ti content in biotite yields a mean temperature of 652 °C (1σ = 10 °C), and biotite–muscovite pairs yield an average pressure of 0.46 GPa (1σ = 0.06 GPa). Fe-Ti oxides and zircon occur as accessory phases. The Al2O3 exhibits a positive correlation with K2O and TiO2, which implies that mica and biotite control the major element abundances of studied samples. These samples indicate negative Sr and positive Th anomalies in a Post Archean Australian Shale (PASS) normalised spider diagram. Also, these samples show a nearly horizontal trend with (La/Yb) PASS varying between 0.56 and 1.92 with a negative to slightly positive Eu anomaly (Eu/Eu* = 1.20, 1σ = 0.38). LA-ICPMS analysis of detrital zircon grains (number of analyses = 100 from two samples) yields 207Pb/206Pb ages range from 1500 to 2600 Ma. The zircons grains with weighted average ages between 2500 Ma, 2400 Ma, 2200 Ma, 2000 Ma, 1900 and 1800 Ma exhibit magmatic and high-temperature deformation features. The 1604 Ma old zircons exhibit homogeneous domains and overgrowths over older zircons, implying metamorphic origin. The Chemical Index of Alteration (CIA = 66 to 77), Chemical Index of Weathering (CIW = 73 to 95), and Plagioclase Index of Alteration (PIA = 81 to 91) values indicate moderate to intense weathering of the source area. Source and tectonic discrimination plots imply a felsic source and active tectonic setting. Accordingly, 1900–1800 Ma old magmatic zircons in the current samples constrain the maximum depositional age for the Khammam Schist Belt. Compared with the detrital zircon geochronology of the North China Craton and East Antarctica, the current samples exhibit peaks at circa 2500 Ma, 2400 Ma, 2200 Ma, 2000 Ma, 1900–1800 Ma, and 1600 Ma, implying Khammam Schist Belt as part of the South India Cratonic Block shares similar geological history with North China Craton and East Antarctica. Our study suggests that North China Craton and East Antarctica were connected with the South Indian Cratonic Block during the Columbia assembly.

Dharwar东部克拉通Khammam Schist带的地球化学和碎屑锆石地质年代学:印度-华北克拉通-南极连接在古-中元古代地壳组合中的意义
本通讯报告了发生在东部达尔瓦尔克拉通-巴斯塔克拉通-东部高止山脉三交界处的Khammam Schist带变质沉积物的地球化学调查和碎屑锆石地质年代学结果。黑云母(XMg=0.46–0.52)和白云母(11 O=3.08–3.17的每式单位硅原子数)与碱长石构成了所研究样品的矿物学。黑云母中的Ti含量产生652°C(1σ=10°C)的平均温度,黑云母-白云母对产生0.46 GPa(1σ=0.06 GPa)的平均压力。Fe-Ti氧化物和锆石作为副相出现。Al2O3与K2O和TiO2呈正相关,这表明云母和黑云母控制了所研究样品的主要元素丰度。这些样本表明后太古宙澳大利亚页岩(PASS)归一化蜘蛛图中存在负Sr和正Th异常。此外,这些样品显示出几乎水平的趋势,(La/Yb)PASS在0.56和1.92之间变化,Eu异常为负至略正(Eu/Eu*=1.20,1σ=0.38)。碎屑锆石颗粒的La-ICPMS分析(两个样品的分析次数=100)得出207Pb/206Pb年龄范围为1500至2600 Ma。锆石颗粒的加权平均年龄在2500 Ma、2400 Ma,2200 Ma、2000 Ma、1900和1800 Ma表现出岩浆和高温变形特征。1604 Ma年龄的锆石在较老的锆石上表现出均匀的区域和过度生长,这意味着变质起源。蚀变化学指数(CIA=66至77)、风化化学指数(CIW=73至95)和斜长石蚀变指数(PIA=81至91)值表示源区的中度至强烈风化。烃源和构造判别图暗示了长英质烃源和活跃的构造环境。因此,当前样品中1900–1800 Ma的岩浆锆石限制了Khammam Schist带的最大沉积年龄。与华北克拉通和南极洲东部的碎屑锆石地质年代学相比,目前的样品在2500 Ma、2400 Ma、2200 Ma、2000 Ma、1900–1800 Ma和1600 Ma左右出现峰值,这意味着作为南印度克拉通地块一部分的哈姆斯裂带与华北克拉顿和南极洲东部有着相似的地质历史。我们的研究表明,华北克拉通和南极洲东部在哥伦比亚组装期间与南印度克拉通地块相连。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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