Role of trace element Pedogeochemistry in Diamond Exploration- A first Report from Lattavaram Kimberlite Cluster, Wajrakarur Field, Eastern Dharwar Craton, southern India

P. Phani
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引用次数: 1

Abstract

Trends in concentration of selected trace elements in residual soils on four known diamondiferous kimberlite pipes (3, 4, 8 and 9) occurring at Lattavaram within the Wajrakarur Kimberlite Field (WKF) is attempted for the first time. The pipes 3 and 4 are exposed whereas the 8 and 9 are concealed under calcrete and colluvium. For this purpose, elements like Nb, Cr, Ni, Co, Zr, Mg, Sr and La are used to understand their concentrations in the kimberlitic soils in comparison with background granitic soils. It is observed that the soils on kimberlite pipes show conspicuous enrichment of elements such as Cr, Co, Nb, Ni, Mg and Sr when compared to soils in the country rock granitoid. However, no much variation in the elements La and Zr patterns between the kimberlitic and background soils is noticed. The high pulse in trace elements in kimberlitic soils is attributed to the presence of primary kimberlitic minerals and their weathered products in the soil. This particular aspect of pedogeochemistry is envisaged to be useful as an exploration tool in search of kimberlites in cratonic parts of southern India. An enrichment of Nb content upto 45 ppm in residual soils may be considered as anamolous in the craonic parts of Indian subcontinent, which needs to be confirmed and taken forward in conjunction with high resolution geological mapping, geophysics followed up by drilling for confirmation of kimberlite/lamproite occurrence.
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微量元素地球化学在金刚石勘探中的作用——来自印度南部达尔瓦尔克拉通东部Wajrakarur油田Lattavaram金伯利岩群的首次报告
首次尝试了Wajrakarur金伯利岩田(WKF)Lattavaram的四条已知含金刚石金伯利岩管道(3、4、8和9)上残留土壤中选定微量元素的浓度趋势。管道3和4暴露在外,而管道8和9隐藏在钙混凝土和崩积层下。为此,使用Nb、Cr、Ni、Co、Zr、Mg、Sr和La等元素来了解它们在金伯利岩土壤中的浓度,并与背景花岗岩土壤进行比较。据观察,与围岩花岗岩类土壤相比,金伯利岩管道上的土壤显示出Cr、Co、Nb、Ni、Mg和Sr等元素的显著富集。然而,金伯利岩和背景土壤中La和Zr元素的模式没有太大变化。金伯利岩土壤中微量元素的高脉冲归因于土壤中存在初级金伯利岩矿物及其风化产物。土壤地球化学的这一特殊方面被认为是在印度南部克拉通地区寻找金伯利岩的有用勘探工具。残余土壤中Nb含量高达45ppm的富集可能被认为是印度次大陆岩质部分的间苯二酚,这需要结合高分辨率地质测绘、地球物理和钻探来确认金伯利岩/黄铜矿的存在。
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审稿时长
16 weeks
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