西非克拉通Banfora绿岩带布基纳法索南部Mangodara段金及贱金属赋存的地球化学流动性

Bernadin Gnamou, Hermann Ilboudo, Wilfried Antoine Bassou Toé, Sâga Sawadogo
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摘要

在Banfora绿岩带(西非克拉通baoul - mossi域)的Mangodara地区,我们的研究重点是主要元素和微量元素的地球化学迁移性评价。金和贱金属赋存于高度变质的长英质(变质玄武岩)和中间(变质玄武岩和变质玄武岩)地层中。由绿晶石-蓝晶石-叶蜡石组成的常见矿物组合被解释为铝质热液蚀变的变质当量。伴生长英质和中质火山岩富Fe2O3、K2O(变质岩、变质玄武岩),贫MgO、Al2O3、CaO、P2O5、Na2O(变质玄武岩)和Fe2O3、MgO、CaO(变质玄武岩)。在矿化的蓝晶石-含钙石的变质石中,Al2O3的损耗表明矿物受到了腐蚀。矿化变质岩富集Au、Ag、Ba、Bi、Cr、Cu、Eu、La、Mo、Ni、Pb、S、Sc、V,亏损As、Sb、Co、Sn、Zn;矿化变质岩富集Au、Ag、As、Mo、S、Sb,亏损Co、Sn、Zn、Bi、Cr、Cu、Eu、Ni、Pb、Sc, Ba、La、V在变质岩中不流动。银、砷、锡是该区金矿化的地球化学载体,成矿特征为变质岩中的Au + Ba + Cu + Eu + La + Mo + Ni + S组合,变质岩中的Au + S + Sb + As + Ag + Bi。
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Geochemical Mobility Associated to Gold and Base Metal Occurrences of Mangodara Sector, in Southern Burkina Faso, Banfora Greenstone Belts (West African Craton)
In the Mangodara area within the Banfora greenstone belts (Baoulé-Mossi domain of the West African Craton), our study focused on geochemical assessment of the mobility of major and trace elements. Gold and base metal occurrences are hosted in highly metamorphic felsic (metarhyolite) and intermediate (metadacite and metaandesite) formations. Common mineral assemblages made up of staurolite - kyanite - pyrophyllite are interpreted to represent the metamorphosed equivalent of aluminous hydrothermal alteration. Associated felsic and intermediate volcanic rocks are enriched in Fe2O3, K2O (metaandesite, metarhyolite) and depleted in MgO, Al2O3, CaO, P2O5, Na2O (metarhyolite) and Fe2O3, MgO, CaO (metaandesite). Al2O3 depletion in mineralized kyanite-staurotide bearing metarhyolites suggests corroded minerals. Mineralized metarhyolites show enrichment in Au, Ag, Ba, Bi, Cr, Cu, Eu, La, Mo, Ni, Pb, S, Sc, V and depletion in As Sb Co, Sn, Zn while mineralized metaandesites show enrichment in Au, Ag, As, Mo, S, Sb and depletion in Co, Sn, Zn, Bi, Cr, Cu, Eu, Ni, Pb, Sc. Ba, La, V are immobile in metaandesites. Finally, Ag, As, Sn appear as geochemical vectors for gold exploration in the study area since gold mineralization is characterized by Au + Ba + Cu + Eu + La + Mo + Ni + S association in metarhyolites and Au + S + Sb + As + Ag + Bi in metaandesites.
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