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首页> 外文期刊>Exploration Geophysics >Mapping geology associated with manganese mineralisation using spectral sensing techniques at Woodie Woodie, East Pilbara
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Mapping geology associated with manganese mineralisation using spectral sensing techniques at Woodie Woodie, East Pilbara

机译:在东皮尔巴拉的Woodie Woodie使用光谱感应技术绘制与锰矿化有关的地质图

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Mineralogical and geological maps are now possible through a new generation of airborne and satellite systems including the 126-band airborne HyMap and 14-band satellite-borne ASTER imaging sensors. Data from both these imaging technologies were tested for their ability to map geological host rock and mineralogies associated with the Woodie Woodie manganese (Mn) mineral deposits. A detailed study was conducted over the deposits using processed ASTER and HyMap data in conjunction with field and laboratory data. In addition, processed ASTER products were also generated for other prospective mineralised terrains over a larger area within the surrounding Bangemall Basin. Seamless maps were generated in this study from ASTER and HyMap imagery to represent surface abundances of either mineral groups or specific mineral identities. The ASTER imagery, at 15 to 90 m resolution, enabled the generation of maps designed to represent the abundance of broad mineral groups, including MgOH/carbonate, quartz/silica, ferric, and ferrous iron (within silicate or carbonate). However, the accuracy of these products was observed to be limited, mainly by the broad spectral resolution of the ASTER bands. Narrower spectral bands are generally required to discriminate and map specific minerals, and separate the effects of vegetation and the atmosphere. In contrast, 5 metre resolution HyMap data demonstrated accurate mapping of abundances of minerals such as ferric iron and dolomite/calcite, as well as dry and green vegetation. Image products representing ferrous-rich carbonate units and opaques (including manganese) were also generated. The results of this study showed that the best products for mapping the Carawine Dolomite and Pinjian Chert Breccia units hosting the Mn mineralisation are obtained by using HyMap data and included: carbonate abundance; ferrous iron content within carbonate units; and ferric iron abundance. The ASTER quartz map product also proved useful to identify silicified dolomite. The geological interpretation of these mineral maps was aided by the comparison and integration with digital elevation model (DEM) and Thorium information from detailed airborne radiometric surveying.
机译:现在,可以通过新一代的机载和卫星系统实现矿物学和地质图,包括126波段的空中HyMap和14波段的卫星ASTER成像传感器。测试了这两种成像技术的数据,以绘制出与伍迪伍迪锰(Mn)矿床有关的地质宿主岩石和矿物学的图谱。使用已处理的ASTER和HyMap数据以及现场和实验室数据对矿床进行了详细研究。此外,还为周围的Bangemall盆地内较大区域的其他潜在矿化地带生产了经加工的ASTER产品。在这项研究中,从ASTER和HyMap影像生成了无缝地图,以表示矿物群或特定矿物身份的表面丰度。 ASTER影像的分辨率为15到90 m,可生成旨在表示丰富的广泛矿物群的地图,包括MgOH /碳酸盐,石英/二氧化硅,铁和亚铁(在硅酸盐或碳酸盐范围内)。但是,观察到这些产品的准确性受到限制,主要是因为ASTER波段的宽光谱分辨率。通常需要较窄的光谱带来区分和绘制特定的矿物,并区分植被和大气的影响。相比之下,分辨率为5米的HyMap数据证明了诸如三价铁和白云石/方解石以及干燥和绿色植被等多种矿物质的精确映射。还生成了代表富含铁的碳酸盐单元和不透明的图像产品(包括锰)。这项研究的结果表明,利用HyMap数据可获得绘制出Carawine白云岩单元和含锰矿化的Pinjian Chert角砾岩单元的最佳产品,包括:碳酸盐丰度;碳酸盐单位内的亚铁含量;和铁铁丰富。事实证明,ASTER石英图产品也可用于识别硅化白云石。这些矿物图的地质解释得益于与数字高程模型(DEM)的比较和集成,以及来自详细机载辐射测量的Thor信息。

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