首页> 外文期刊>International journal of applied earth observation and geoinformation >Hyperspectral remote sensing of evaporate minerals and associated sediments in Lake Magadi area, Kenya
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Hyperspectral remote sensing of evaporate minerals and associated sediments in Lake Magadi area, Kenya

机译:肯尼亚马加迪湖地区蒸发矿物和相关沉积物的高光谱遥感

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摘要

Pleistocene to present evaporitic lacustrine sediments in Lake Magadi, East African Rift Valley, Kenya were studied and mapped using spectral remote sensing methods. This approach incorporated surface mineral mapping using space-borne hyperspectral Hyperion imagery together with laboratory analysis, including visible, near-infrared diffuse reflectance spectroscopy (VNIR) measurements and X-ray diffraction for selected rock and soil samples of the study area. The spectral signatures of Magadiite and Kenyaite, which have not been previously reported, were established and the spectral signatures of trona, chert series, volcanic tuff and the High Magadi bed were also analyzed. Image processing techniques, MNF (Minimum Noise Fraction) and MTMF (Mixture Tuned Matched Filtering) using a stratified approach (image analysis with and without the lake area), were used to enhance the mapping of evaporates. High Magadi beds, chert series and volcanic tuff were identified from the Hyperion image with an overall mapping accuracy of 84.3%. Even though, the spatial distribution of evaporites and sediments in Lake Magadi area change in response to climate variations, the mineralogy of this area has not been mapped recently. The results of this study shows the usefulness of the hypersspectral remote sensing to map the surface geology of this kind of environment and to locate promising sites for industrial open-pit trona mining in a qualitative and quantitative manner.
机译:利用光谱遥感方法研究并绘制了更新世,以显示肯尼亚东非大裂谷的马加迪湖中蒸发的湖相沉积物。这种方法结合了使用星载高光谱Hyperion影像进行的表面矿物制图以及实验室分析,包括研究区域内选定岩石和土壤样品的可见,近红外漫反射光谱(VNIR)测量和X射线衍射。建立了以前未曾报道过的Magadiite和Kenyaite的光谱特征,并分析了天然碱,石系列,火山凝灰岩和High Magadi床的光谱特征。使用分层方法(有或无湖区的图像分析)的图像处理技术,MNF(最小噪声分数)和MTMF(混合调谐匹配滤波)被用来增强蒸发物的绘图。从Hyperion图像中识别出高Magadi层、,石系列和火山凝灰岩,总体测绘精度为84.3%。尽管马加迪湖地区蒸发物和沉积物的空间分布随气候变化而变化,但该地区的矿物学最近尚未作图。这项研究的结果表明,高光谱遥感对于定性这种环境的表面地质图以及以定性和定量的方式为工业露天天然碱的开采找到有希望的地点是有用的。

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