VIS-NIR-SWIR spectroscopic mapping for classification of hydrothermal-metasomatic alterations on the flanks of the Stolbovoe uranium deposit (Eastern Cis-Sayan)

E. N. Karmanov, N. V. Ledeneva, V. A. Rassulov, A. V. Tomashev
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Abstract

Background. The Stolbovoe deposit is located in the northern part of the Eastern Sayan, in the Nizhneudinsky district of the Irkutsk region, within the N-47-IX map sheet. The surveying of the territory began in the sixties of the last century. The Stolbovoe deposit was discovered based on direct search signs (radioactivity). At the same time, the search was not aimed at revealing new deposits hidden under the Riphean cover; therefore, most of the territory remained unexplored.Aim. To map and classify the near-ore hydrothermal-metasomatic alterations manifested on the flanks of the Stolbovoe uranium deposit.Materials and methods. During the 2018–2020 period, within the framework of prospecting work, the employees of the All-Russian Scientific-Research Institute of Mineral Resources named after N.M. Fedorovsky (VIMS) carried out the mapping of ore alterations using an innovative method of Infrared (IR) spectroscopy. The diagnostics of mineralization was carried out using a portable TerraSpec 4 Hi-Res spectrometer. The instrument was used to measure diffuse reflectance spectra in the Ultraviolet-Visible-Short-Wave Infrared (UV-Vis-SWIR) ranges; the composition of various mineral phases was determined using the TSGVersion 7 database and software.Results. This study confirmed the efficiency of the method applied for the diagnostics of all varieties of clayey (kaolinite, montmorillonite) and fine micaceous (phengite, sericite, paragonite and their illite varieties) minerals, as well as carbonates (dolomite, ankerite, siderite) and chlorites in the rock in situ or in samples without preliminary sample preparation.Conclusions. The use of the described method for investigating cores and samples of the Stolbovoe uranium deposit (East Sayan region) made it possible to classify the epigenetic changes in rocks and to map hydrothermal-metasomatic halos, including those near-ore, formed by mineralization that could not be identified by conventional visual and optical methods.
东顺萨扬Stolbovoe铀矿床侧翼热液交代变化的VIS-NIR-SWIR光谱填图分类
背景。Stolbovoe矿床位于伊尔库茨克地区下涅丁斯基区的东萨扬北部,位于N-47-IX地图范围内。对这片领土的勘测始于上世纪六十年代。Stolbovoe矿床是根据直接搜索信号(放射性)发现的。与此同时,搜索的目的并不是为了发现隐藏在里芬盖层下的新矿床;因此,大部分领土仍未被开发。对Stolbovoe铀矿床侧翼的近矿热液交代蚀变进行了绘制和分类。材料和方法。在2018-2020年期间,在勘探工作的框架内,以N.M.费多罗夫斯基(N.M. Fedorovsky)命名的全俄矿产资源科学研究所(VIMS)的员工使用创新的红外(IR)光谱方法进行了矿石变化的测绘。矿化诊断采用便携式TerraSpec 4高分辨率光谱仪进行。该仪器用于测量紫外-可见-短波红外(UV-Vis-SWIR)范围内的漫反射光谱;采用TSGVersion 7数据库和软件对各矿相组成进行了测定。本研究证实了该方法适用于原位岩石或未经预制样的样品中各种粘土(高岭石、蒙脱石)和细云母(云母、绢云母、paragonite及其伊利石品种)矿物,以及碳酸盐(白云石、铁云母、菱铁矿)和绿泥石的诊断。使用上述方法对Stolbovoe铀矿床(东萨扬地区)的岩心和样品进行调查,可以对岩石的表观成因变化进行分类,并绘制热液交代晕,包括那些由矿化形成的、用常规视觉和光学方法无法识别的矿附近晕。
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