Hypozonal orogenic gold mineralization in the Giyani Goldfield, Northern Kaapvaal Craton/Limpopo Complex

Author:

Smit C.A.1,Van Reenen D.D.1,McCourt S.2,Huizenga J.M.31,Belyanin G.1,Vafeas N.A.14

Affiliation:

1. Department of Geology, University of Johannesburg, PO Box 524, Auckland Park, 2006, South Africa

2. Geological Sciences, University of KwaZulu Natal, Durban, South Africa

3. Economic Geology Research Institute (EGRU), College of Science and Engineering, James Cook University, Townsville, QLD 4811, Australia

4. iCRAG (Irish Centre for Research in Applied Geosciences), O’Brien Centre for Science (East), University College Dublin, Belfield, Dublin 4.

Abstract

Abstract The paper reviews published and unpublished geological data pertaining to the structural and metamorphic controls, rock types, characteristic features, source, and timing of hypozonal orogenic gold mineralization in the Giyani Goldfield. The Giyani Goldfield includes the NW domain of the >3.0 Ga Giyani greenstone belt (GGB) at the northern edge of the Kaapvaal Craton and the southern retrograde hydrated domain of the juxtaposed Southern Marginal Zone (SMZ) of the ca. 2.72 Ga Limpopo Complex (LC). Mineralization at all gold mines and gold prospects of the Giyani Goldfield is structurally controlled and closely associated with the Hout River shear zone (HRSZ) and associated smaller shear zones suggesting a specific tectonic setting. This tectonic setting is the direct consequence of thrusting the SMZ of the LC against and over the adjacent GGB at the position of the steeply north-dipping (south verging) HRSZ during the exhumation stage of the ca. 2.72 to 2.69 Ga Limpopo orogeny followed by regional retrograde hydration of the southern part of the SMZ at ca. 2.68 to 2.62 Ga. This tectonic setting offers an explanation for a deep-seated crustal source for gold and for the concentration of orogenic gold mineralization within specific structural features located within the Giyani Goldfield. This tectonic setting also explains the lithological, structural and metamorphic complexity, metasomatic alteration and post-peak metamorphic timing of gold mineralization. Finally, it provides important clues with regards to a crustal source for gold mineralizing fluids and the identification of new potential targets for gold exploration in the Giyani Goldfield.

Publisher

Geological Society of South Africa

Subject

Geology

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