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ASTER ALI and Hyperion sensors data for lithological mapping and ore minerals exploration

机译:ASTERALI和Hyperion传感器数据用于岩性测绘和矿石矿物勘探

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摘要

This paper provides a review of the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER), Advanced Land Imager (ALI), and Hyperion data and applications of the data as a tool for ore minerals exploration, lithological and structural mapping. Spectral information extraction from ASTER, ALI, and Hyperion data has great ability to assist geologists in all disciplines to map the distribution and detect the rock units exposed at the earth’s surface. The near coincidence of Earth Observing System (EOS)/Terra and Earth Observing One (EO-1) platforms allows acquiring ASTER, ALI, and Hyperion imagery of the same ground areas, resulting accurate information for geological mapping applications especially in the reconnaissance stages of hydrothermal copper and gold exploration, chromite, magnetite, massive sulfide and uranium ore deposits, mineral components of soils and structural interpretation at both regional and district scales. Shortwave length infrared and thermal infrared bands of ASTER have sufficient spectral resolution to map fundamental absorptions of hydroxyl mineral groups and silica and carbonate minerals for regional mapping purposes. Ferric-iron bearing minerals can be discriminated using six unique wavelength bands of ALI spanning the visible and near infrared. Hyperion visible and near infrared bands (0.4 to 1.0 μm) and shortwave infrared bands (0.9 to 2.5 μm) allowed to produce image maps of iron oxide minerals, hydroxyl-bearing minerals, sulfates and carbonates in association with hydrothermal alteration assemblages, respectively. The techniques and achievements reviewed in the present paper can further introduce the efficacy of ASTER, ALI, and Hyperion data for future mineral and lithological mapping and exploration of the porphyry copper, epithermal gold, chromite, magnetite, massive sulfide and uranium ore deposits especially in arid and semi-arid territory.
机译:本文概述了先进的星载热发射和反射辐射计(ASTER),先进的陆地成像仪(ALI)和Hyperion数据以及这些数据作为矿石矿物勘探,岩性和结构测绘的工具的应用。从ASTER,ALI和Hyperion数据中提取光谱信息具有强大的能力,可以帮助所有学科的地质学家绘制分布图并检测暴露在地球表面的岩石单元。地球观测系统(EOS)/地球观测平台(EO-1)与地球观测系统(EO-1)几乎是重合的,因此可以获取同一地面区域的ASTER,ALI和Hyperion影像,从而为地质制图应用提供了准确的信息,尤其是在热液铜和金的勘探,铬铁矿,磁铁矿,块状硫化物和铀矿床,土壤的矿物成分以及区域和区域规模的结构解释。 ASTER的短波红外和热红外波段具有足够的光谱分辨率,可以绘制羟基矿物基团以及二氧化硅和碳酸盐矿物的基本吸收,以进行区域制图。可以使用跨越可见光和近红外光的六个独特的ALI波段来区分含铁的矿物。 Hyperion可见和近红外波段(0.4至1.0μm)和短波红外波段(0.9至2.5μm)可以分别生成氧化铁矿物,含羟基矿物,硫酸盐和碳酸盐与水热蚀变组合相关的图像图。本文所综述的技术和成果可以进一步介绍ASTER,ALI和Hyperion数据在未来的矿物和岩性制图以及斑岩铜,超热金,铬铁矿,磁铁矿,块状硫化物和铀矿床勘探中的功效。干旱和半干旱地区。

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