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首页> 外文期刊>Journal of Geology and Mining Research >Application of the mobile metal ion geochemical technique in the location of buried gold mineralization in Essase Concession, Eastern Region, Ghana
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Application of the mobile metal ion geochemical technique in the location of buried gold mineralization in Essase Concession, Eastern Region, Ghana

机译:流动金属离子地球化学技术在加纳东部埃塞斯租界中金矿的埋藏位置中的应用

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摘要

The principle of mobile metal ion geochemistry analysis for soil samples taken from Essase Concession in Nkawkaw of the Eastern Region Ghana, during geochemical survey had accurately and sharply delineated target gold mineralization. Observations suggested that preferentially most metals (Ni, Zn, Pb, Cu, and As) including gold (Au) were locatedin the top 22 cm of the profile below the interface giving clearly an optimum sampling depth. Using the determined threshold of 3.1 ppm for Au, a broad anomalous zone was delineated with four strong anomalous (& 4.8 ppm) areas within the broad anomalous zone clearly outlined to suggest accurate location of surface or the sub-surface primary mineralization. The strong anomalous areas suggested signatures of structural corridor hosting the gold mineralization which appear to strike in two directions NNE – SSW and NE – SW. Mineralization style was inferred to be structurally controlled. The response ratios show that Ni, Pb, Zn and Cu have high concentrations and correlate well with Au on the concession, therefore they could serve as pathfinders in search for Au in that geochemical environment.
机译:在加纳东部地区恩夸夫考的Essase特许经营区进行的土壤样品移动金属离子地球化学分析的原理,在地球化学调查过程中准确而清晰地描绘了目标金的矿化作用。观察结果表明,包括金(Au)在内的大多数金属(镍,锌,铅,铜和砷)优选位于界面下方轮廓的顶部22厘米处,显然可以提供最佳的采样深度。使用所确定的Au的3.1ppm的阈值,在宽的异常区域内划定了宽的异常区域,在该宽的异常区域内清楚地勾勒出四个强的异常区域(> 4.8ppm),以表明表层或地下主要矿化的准确位置。强烈的异常区域暗示了承载金矿化作用的结构性走廊的特征,这些趋势似乎在两个方向上发生。 SSW和NE– SW。矿化方式被认为是结构控制的。响应比表明,镍,铅,锌和铜的含量很高,并且在特许权上与金具有很好的相关性,因此它们可以作为在该地球化学环境中寻找金的探路者。

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