New prospects of uranium mineralisation of the Trans-Urals based on regional geochemical survey data

L. A. Krinochkin, O. Krinochkina, V. Blokov
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Abstract

Introduction. The article presents the prospects of uranium mineralisation in the Trans-Urals. The study area lies in the southwestern part of the Western Siberian Plate and belongs to the West Siberian uranium-bearing belt. The belt controls the paleovalley type uranium infiltration mineralisation of the Mesozoic age. The data obtained from the anomalous geochemical area (AGA) of the Dolmatovsky and Khokhlovsky uranium ore regions are used as a reference with suitable geochemical characteristics. Aim. The aim of this study is to identify and forecast new uranium ore regions that are promising for the discovery of industrial deposits of paleovalley type uranium.Materials and methods. The research was conducted while establishing the geochemical bases on a scale of 1 : 1 00 000. Over 2000 samples of soils and bottom sediments were evaluated on a 10 × 10 km grid. The uranium active forms and other 56 elements were detected in the samples. The analysis was carried out by inductively coupled plasma mass spectrometry (ICP-MS) in the FSBI “IMGRE” analytical centre.Results. Besides the known Dolmatovsky and Khokhlovsky uranium ore regions, 31 AGAs with uranium specialisation were identified based on the geochemical data obtained in a well-developed and accessible site. Their prospectivity was assessed according to a set of geological and geochemical criteria. As a result, six new promising areas for discovering industrial uranium deposits were identified, and a significant increase in uranium reserves is expected in the well-known Khokhlovsky region.Conclusions. The practical implication of the study is the forecast of the expansion of the uranium raw materials base around the known deposits with finite raw materials reserves.
基于区域地球化学测量资料的跨乌拉尔地区铀矿化新展望
介绍。文章介绍了外乌拉尔地区铀矿化的远景。研究区位于西西伯利亚板块西南部,属于西西伯利亚含铀带。该带控制着中生代古谷型铀渗透成矿作用。以Dolmatovsky和Khokhlovsky铀矿区异常地球化学区(AGA)的资料为参考,具有合适的地球化学特征。的目标。本研究的目的是识别和预测有希望发现古河谷型铀工业矿床的新铀矿区。材料和方法。研究是在1∶10万比例尺建立地球化学基地的同时进行的。在一个10 × 10公里的网格上对2000多个土壤和底部沉积物样本进行了评估。在样品中检测到铀活性形态和其他56种元素。在FSBI“IMGRE”分析中心采用电感耦合等离子体质谱(ICP-MS)进行分析。除了已知的Dolmatovsky和Khokhlovsky铀矿区外,根据一个发育良好且可达的地点获得的地球化学数据,确定了31个具有铀专门化的AGAs。根据一套地质和地球化学标准对其远景进行了评价。结果,确定了6个新的工业铀矿勘探潜力区,并且在著名的Khokhlovsky地区,铀储量有望显著增加。该研究的实际意义是对已知铀矿附近原料储量有限的铀原料基数的扩大进行预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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