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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Integrated geophysical studies to elicit the subsurface structures associated with Uranium mineralization around South Purulia Shear Zone, India: A review
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Integrated geophysical studies to elicit the subsurface structures associated with Uranium mineralization around South Purulia Shear Zone, India: A review

机译:综合地球物理研究引起的地下结构与铀浓缩有关矿化在南部Purulia剪切带,印度:一个回顾

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摘要

South Purulia Shear Zone in India is an important zone that hosts uranium mineralization. Since detailed geophysical studies have not been carried out in this region, an integrated geophysical study using self-potential, resistivity, very low frequency electromagnetic and radiometric methods was performed to identify the subsurface structures that could host the hydrothermally altered uranium deposits in the area. The study reveals the wide and large magnitude of negative self-potential anomaly across the South Purulia Shear Zone. The peak negative self-potential anomalies are correlated with the low gravity and low resistivity anomalies measured along various profiles. The low self-potential, gravity and low resistivity anomaly zones are also correlated with conducting zones inferred from very low frequency electromagnetic measurements. Interpretation of self-potential data reveals multiple thick sheet-type vertical and/or inclined structures which might be associated with uranium mineralization. Schlumberger resistivity sounding data reveals an increasing trend of apparent resistivity with current electrode separations/depth. Apparent conductance measured simultaneously with resistivity measurement reveals an increase in current flow of current as depth increases. This exhibits the presence of thin conducting layers at these depths, which is not reflected in resistivity sounding data due to suppression problem. Also this conducting layer is consistent in various soundings and is connected from Raghunathpur to the South Purulia Shear Zone. Correlation of very low frequency and self-potential data shows that the structures are comparable and a radiometric profile also advocate that the conducting structure is associated with radioactive minerals. These structures are likely to be mineralized zones as hydro-uranium anomaly has also been reported from various locations in the area. Moreover, drilling results at a specific mine near the study area also confirms the presence of uranium mineralization. The hydrothermal activity associated with uranium mineralization seems to be still active in the area. Such combined geophysical studies are essential to understand this highly complex shear zone for the economic exploitation of its natural resources. (C) 2014 Elsevier B.V. All rights reserved.
机译:南印度的剪切带是一个很重要的主机铀成矿带。没有详细的地球物理研究在这个地区,进行集成地球物理研究利用自然电位,频率电磁波电阻率非常低和辐射度方法进行识别地下结构主办热水地改变的铀矿区域。级-自然电位异常在南方的剪切带。消极的自然电位异常是相关的低重力和低电阻率异常测量在各种配置文件。自然电位低、重力和较低的电阻率异常区也与开展区推断从非常低的频率电磁测量。自然电位数据显示多个厚表类型垂直和/或倾斜结构这可能与铀浓缩有关吗矿化。数据显示出越来越明显的趋势电阻率与当前电极分离/深度。同时与电阻率测量显示电流的电流的增加深度增加。在这些深度进行的薄层,由于没有反映在电阻率测深数据抑制问题。各调查结果是一致的,是什么连接从Raghunathpur Purulia南部剪切带。自然电位数据显示的结构可比性和放射概要文件主张进行结构与放射性矿物。结构可能是矿化区hydro-uranium异常也被报告不同的地方。结果在一个特定的研究区域附近的我也证实了铀的存在矿化。与铀成矿似乎有关在该地区仍然活跃。地球物理研究理解至关重要这对经济高度复杂的剪切带开发其自然资源。爱思唯尔帐面价值保留所有权利。

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