利用Hyperion高光谱遥感数据对印度比尔瓦拉邦Jahajpur地区Chhabadiya村附近滑石矿物进行岩石学、XRD分析和鉴定

Mahesh Kumar Tripathi, H. Govil, P. Diwan
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引用次数: 2

摘要

Hyperion高光谱遥感数据更大的天气视图和连续通道的排列增强了对地球矿物、大气气体、植被等特征的小光谱识别。热液蚀变矿物多与附近的地质构造特征有关。在这项研究中,Hyperion数据被用于识别Rajasthan bihilwara Jahajpur地区Chhabadiya村附近的热液蚀变矿物和蚀变相。有一些矿物,如滑石矿物通过海伯龙星图像识别。通过岩相分析、XRD分析和光谱分析对鉴定出的滑石矿物进行了对比和评价。通过野外调查、野外样品光谱和美国地质调查局(USGS)滑石矿物谱库完成了鉴定矿物的验证。结果表明,Hyperion高光谱遥感数据具有识别矿物、矿物组合、蚀变矿物和蚀变相的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Petrography, XRD Analysis and Identification of Talc Minerals near Chhabadiya Village of Jahajpur Region, Bhilwara, India through Hyperion Hyperspectral Remote Sensing Data
The larger synoptic view and contiguous channels arrangement of Hyperion hyperspectral remote sensing data enhance the minor spectral identification of earth’s features such as minerals, atmospheric gasses, vegetation and so on. Hydrothermal alteration minerals mostly associated with vicinity of geological structural features such as lineaments and fractures. In this study Hyperion data is used for identification of hydrothermally altered minerals and alteration facies near Chhabadiya village of Jahajpur area, Bhilwara, Rajasthan. There are some minerals such as talc minerals identified through Hyperion imagery. The identified talc minerals correlated and evaluated through petrographic analysis, XRD analysis and spectroscopic analysis. The validation of identified minerals completed by field survey, field sample spectra and USGS spectral library talc mineral spectra. The conclusion is that Hyperion hyperspectral remote sensing data have capability to identify the minerals, mineral assemblage, alteration minerals and alteration facies.
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