首页> 外文会议>International Geoscience Remote Sensing Symposium >XRD and Infrared Spectroscopic Validation of Weathering Surfaces from Ultramafic and Mafic Lithologies Examined using Hyperspectral Imagery, Cross Lake Area, Cape Smith Belt, Northern Quebec, Canada
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XRD and Infrared Spectroscopic Validation of Weathering Surfaces from Ultramafic and Mafic Lithologies Examined using Hyperspectral Imagery, Cross Lake Area, Cape Smith Belt, Northern Quebec, Canada

机译:XRD和红外光谱验证来自Utherspectral图像,Cross Lake地区,Cape Smith Belt,Cape Smith Belt,Northern Quebec,Cape Smith Belt,Cape Smith Belt,Cape Smith Belt,Cape Smith Belt,Cape Smith Belt,Cape Smith Belt,Cape Smith腰带,加拿大XRD和红外光谱验证

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The study area is located at the tectonic boundary between the Povungnituk and Chukotat Groups in the Early Proterozoic Cape Smith Belt near Cross Lake, in northern Quebec. This zone is characterized by elongate intrusive bodies of mafic-ultramafic rocks which have been interpreted as co-magmatic with the Fe- and Mg-rich basalts of the lower Chukotat Group. Such ultramafic sills are often Ni-Cu-PGE bearing in the area. Probe-1 Hyperspectral imagery is being used to differentiate the lithologies in the study area. In an applied field setting such imagery records the spectrum of the surface weathering product rather than the signal from a fresh rock surface. The objective of this investigation was to generate a calibrated database of the hyperspectral signatures of the surficial weathering products of each of the local lithologies. Validation of lithologies and surficial weathering characteristics was carried out during two field campaigns, as well as in subsequent laboratory evaluation using infrared spectroscopy and mineralogical analyses. Field ground-truthing indicated significant visual compositional and textural differences between surficial weathering products for study area lithologies, found to be related to their composition, grain size and most commonly associated vegetation (lichen). In-situ and subsequent laboratory and powdered sample infrared analyses of fresh and weathered surfaces confirmed that infrared absorption features observed in hyperspectral imagery signatures for the lithologies was solely associated with the weathered mineral oxides.
机译:该研究区位于魁北克北部的Cross Hake早期的Povungnituk和Chukottat组之间的构造边界和Chukotat群体。该区域的特点是胶束超岩体的细长侵入性,被解释为与下曲思组的Fe-and Mg的富含Fe-and Mg的底座进行了解释为Co-Magmatic。这种超空间窗台通常是该地区的Ni-Cu-PGE轴承。探针-1高光谱图像用于区分研究区域的岩性。在施加的场地中,设置这种图像记录了表面风化产品的光谱,而不是来自新鲜岩石表面的信号。该研究的目的是生成每个当地岩性的曲线曲线产品的高光谱签名的校准数据库。在两个场运动期间进行了岩性和表地风化特性的验证,以及使用红外光谱和矿物学分析的后续实验室评估。现场地面串拔表明研究区岩性的曲面态化产品之间的显着视觉成分和纹理差异,发现与其组成,粒度和最常见的植被(地衣)有关。原位和随后的实验室和粉末样品红外分析的新鲜和风化表面确认,在岩性的高光谱图像签名中观察到的红外吸收特征与风化的矿物氧化物完全有关。

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