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Geochemistry and petrography of gold-quartz-tourmaline veins of the Okote area, southern Ethiopia: implications for gold exploration

机译:埃塞俄比亚南部奥科特地区金石英-电气石脉的地球化学和岩石学:对金矿勘探的意义

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摘要

Quartz-tourmaline vein-hosting rocks of the Okote area belong to the Neoproterozoic Adola Belt. Metasomatic auriferous quartz-tourmaline veins occur in ductile N-S trending, sinistral shear zones. These veins commonly contain quartz, carbonates, and tourmaline, with minor pyrite, and accessory chalcopyrite, pyrrhotite, and gold. Tourmaline forms isolated euhedral crystals in the fracture surfaces of quartz carbonate veins. Many of the tourmaline crystals are optically zoned with a bluish core and a bluish to brown rim. Electron microprobe analyses show that the tourmalines comprise an intermediate dravite-schorl solid solution with a mean FeO/(FeO+MgO)=0.47. Abrupt transitions between the colour zones within single tourmaline crystals are accompanied by relative variations in the FeO/(FeO+MgO) ratios. The tourmaline separates indicate that the tourmalines contain highly variable average contents of trace elements. Chondrite-normalized rare earth element (REE) abundances of tourmaline separates from auriferous veins show LREE-enriched to LREE-depleted patterns with negative to positive Eu anomalies and a flat, near-chondritic HREE pattern. The auriferous quartz-tourmaline veins have LREE-enriched patterns without a Eu anomaly and a flat HREE pattern, but tourmaline-free gold-quartz veins have very low REE contents and LREE-depleted patterns also without Eu anomalies. The FeO/(FeO+MgO) ratios, major and trace element compositions, and the types of wall-rock alteration are used to suggest that the sources of boron are dominantly metamorphic (dehydration and devolatilization processes), but do not totally exclude the possibility of a magmatic source. The occurrences of high-grade gold associated with tourmaline make tourmaline a valuable prospecting guide for hydrothermal gold mineralization in the Adola Belt, southern Ethiopia.
机译:奥科特地区的石英电气石脉赋存岩属于新元古代阿多拉带。交代耳性石英-电气石脉发生在延性的N-S趋势,左旋剪切带中。这些脉通常包含石英,碳酸盐和电气石,以及少量的黄铁矿,辅助黄铜矿,黄铁矿和金。电气石在石英碳酸盐岩脉状裂缝的表面形成离析的全面晶体。许多电气石晶体在光学上都带有带蓝色的核和带蓝色至棕色边缘的区域。电子探针分析表明,电气石包含中间的Dravte-Schorl固溶体,平均FeO /(FeO + MgO)= 0.47。单个电气石晶体内颜色区域之间的突然转变伴随有FeO /(FeO + MgO)比的相对变化。电气石分离表示电气石包含痕量元素的含量变化很大的平均含量。电气石从耳形脉中分离出的球粒归一化稀土元素(REE)丰富度表明,LREE富集到LREE耗尽型,Eu异常为负到正,且呈扁平,近软骨形的HREE模式。含金石英-电气石脉具有丰富的LREE模式,没有Eu异常和平坦的HREE模式,但是不含电气石的金石英脉具有非常低的REE含量和LREE耗尽的模式,也没有Eu异常。 FeO /(FeO + MgO)的比率,主要元素和微量元素组成以及壁-岩石蚀变的类型被用来表明硼的来源主要是变质的(脱水和脱挥发分过程),但并未完全排除可能性岩浆源。与电气石有关的高品位金的出现使电气石成为埃塞俄比亚南部阿多拉带热液金矿化的有价值的勘探指南。

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