光谱特征研究和地球化学分析在印度南部花岗岩地层 Bhavani Mettupalayam 超基性岩群特征研究中的应用

M. Monisha , M. Muthukumar , V.J. Rajesh
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引用次数: 0

摘要

巴瓦尼断裂带(Bhavani Suture Zone)是南部花岗岩地层(SGT)中的一个区域,位于泰米尔纳德邦西部,是新元古代马杜赖地块和南马杜赖地块的结合部。梅图帕拉亚姆黑云母-超黑云母复合体位于 BSZ 的东段,由偏闪长岩、透辉石、闪长岩和黑云母花岗岩组成。对黑云母-超基性岩露头进行了观察,并从 Nellimalai、Togamalai、Sakkitiyan Karadu、Karudamalai、Karattur、Odhimalai、Tenkalmalai、Ramakavundanur 山采集了黑云母-超基性岩。研究方法包括三个方面,如遥感研究、实验室光谱特征研究和地球化学研究。首先,该研究采用了先进的空间热发射反射辐射计(ASTER)和哨兵-2A 作为绘制岩浆岩-超岩浆岩地图的工具,并应用了遥感技术,如彩色合成、BR(波段比)、PCA(主成分分析)、MNF(最小噪声分数)、SAM(光谱角度绘图仪)和 SVM(支持向量机)。其次,利用 ASD FieldSpec Pro® 分光辐射计对 19 个样本进行了实验室光谱特征研究,以获得 350-2500 纳米光谱区域的反射光谱。对于不同的寄主岩石,去除连续面的反射光谱可提供诊断性的吸收特征。对岩石样本的元素组成和相关重要矿物如何影响吸收带进行了严格分析。通过 XRF 方法确定了 BMUC 岩石样本的主要和次要元素地球化学成分。这项研究的目的是利用遥感研究、光谱特征研究和地球化学分析来确定 BMUC 的特征。与 ASTER 数据相比,Sentinel-2A 能很好地分辨岩性,光谱特征吸收表明存在铁和镁含量。岩石样本的地球化学特征属于托勒密岩到钙碱性岩系列。
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Application of spectral signature study and geochemical analysis in the characterization of Bhavani Mettupalayam Ultramafic Complex in the Southern Granulite Terrane, India

The Bhavani Suture Zone, a region in the Southern Granulite Terrane (SGT), is where the Neoarchean Madurai Block and the Southern Madurai Block in western Tamil Nadu have been joined. The Mettupalayam Mafic-Ultramafic Complex, located in the eastern section of the BSZ, is made up of metagabbros, metadiorites, amphibolites and mafic granulites. The mafic-ultramafic outcrops are viewed and mafic-ultramafic rocks collected from Nellimalai, Togamalai, Sakkitiyan Karadu, Karudamalai, Karattur, Odhimalai, Tenkalmalai, Ramakavundanur hills. This study methodology is composed of three perspectives such as remote sensing study, laboratory spectral signature study and geochemical study. Firstly this study applied on Advanced Spaceborne Thermal Emission Reflection Radiometer (ASTER) and Sentinel-2A used as a tool for mapping mafic-ultramafic rocks and applied the remote sensing techniques like color composites, BR (band ratio), PCA (Principal Component Analysis), MNF (Minimum Noise Fraction), SAM (Spectral Angle Mapper) and SVM (Support Vector Machine). Secondly laboratory spectral signature study is conducted for the 19 samples with ASD FieldSpec Pro® spectroradiometer was used to get the reflectance spectra in the 350–2500 nm spectral region. For different host rocks, the continuum-removed reflectance spectra offer diagnostic absorption features. Critical analysis was done on how the rock samples' elemental composition and related important minerals affected the absorption bands. The major and minor elements geochemical compositions of the BMUC rock samples identified by XRF method. The aim of this research is to characterize the BMUC using remote sensing studies, spectral signature study and geochemical analysis. The Sentinel-2A showing discriminating the lithology well than ASTER data and the spectral signatures absorptions are indicating presence of Fe and Mg contents. The rock samples are falling the series of tholeiitic to calc alkaline characteristics in geochemistry.

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