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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Spectroscopy of the mineralized tonalite–diorite intrusions, Bulghah gold mine area, Saudi Arabia: Effects of opaques and alteration products on Fieldspec data
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Spectroscopy of the mineralized tonalite–diorite intrusions, Bulghah gold mine area, Saudi Arabia: Effects of opaques and alteration products on Fieldspec data

机译:沙特阿拉伯Bulghah金矿区矿化的方钠石-闪闪岩侵入体的光谱学:不透明和蚀变产物对Fieldspec数据的影响

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This paper aims to reveal the spectral characteristics of the mineralized tonalite–diorite intrusions exposed at Bulghah gold mine area, Saudi Arabia, using FieldSpec spectroradiometer and Landsat ETM~+ data. Gold mineralization at Bulghah gold mine is hosted mainly by Syn- to Late-orogenic tonalite–diorite intrusions aligned in N–S direction and is associated mainly with cataclastic zones and quartz veins. Based on field, petrography and FieldSpec data two main tonalite–diorite groups namely A and B are recognized. Group "A", recorded at the mine area, is characterized by low flat spectral profiles with overall low reflectance values (~10%). These low values are attributed to the presence of high content of trans-opaque phases (hematite and goethite) as indicated by petrographic study. Spectral profiles of group "B", recorded at Bulghah North area, show high reflectance values (~40%) with three main absorption features around the 1.45 μm, 2.20 μm and 2.35 μm wavelength regions. These absorption features are attributed mainly to the presence of clay minerals, sericite, chlorite and carbonate alteration products. To discriminate the above mentioned tonalite–diorite groups, band ratios and Minimum Noise Fraction (MNF) techniques are conducted. Landsat false color composite band ratio image (7/4:R, 4/1:G and 4/5:B) discriminates easily the bluish brick red tonalite–diorite intrusions from the surrounding rock units but failed to distinguish the above mentioned two tonalite–diorite groups. On MNF3 image, the two tonalite–diorite groups can be distinguished easily in which group “A” has white color whereas group "B" has gray color. The present study proved the usefulness of FieldSpec spectral profiles and the processed Landsat ETM~+ data for discriminating and delineating the mineralized tonalite–diorite intrusions exposed at the study area.
机译:本文旨在利用FieldSpec分光辐射计和Landsat ETM〜+数据揭示在沙特阿拉伯Bulghah金矿区暴露的矿化斜长石-闪长岩侵入体的光谱特征。布尔加(Bulghah)金矿的金矿化主要由沿南北向排列的同生-晚造山型天青石-闪长岩侵入体所主导,并且主要与碎裂带和石英脉有关。根据现场,岩相学和FieldSpec数据,可以识别出两个主要的斜长石-闪长岩群体A和B。记录在矿区的“ A”组的特点是光谱平坦度低,反射率总体较低(〜10%)。这些低值归因于岩相学研究表明存在大量的不透明相(赤铁矿和针铁矿)。在Bulghah North地区记录的“ B”类光谱谱显示出高反射率值(〜40%),在1.45μm,2.20μm和2.35μm波长区域附近具有三个主要吸收特征。这些吸收特征主要归因于粘土矿物,绢云母,亚氯酸盐和碳酸盐蚀变产物的存在。为了区分上面提到的天石-闪长岩族,进行了带比和最小噪声分数(MNF)技术。 Landsat虚假色带比率图像(7/4:R,4/1:G和4/5:B)可以轻松地区分周围砖块中的青砖红色斜长石-闪长岩侵入体,但无法区分上述两种斜长石–diorite组。在MNF3图像上,可以轻松地区分两个方钠石-闪长岩组,其中“ A”组为白色,而“ B”组为灰色。本研究证明了FieldSpec光谱图和经过处理的Landsat ETM〜+数据对于区分和划定研究区域暴露的矿化斜长石-闪长岩侵入体的有用性。

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