A 1.25 Ga depositional age for the “Paleoproterozoic” Mapedi red beds, Kalahari manganese field, South Africa: New constraints on the timing of oxidative weathering and hematite mineralization

Author:

Rasmussen Birger12,Muhling Janet R.1,Zi Jian-Wei23,Tsikos Harilaos4,Fischer Woodward W.5

Affiliation:

1. School of Earth Sciences, The University of Western Australia, Perth, WA 6009, Australia

2. State Key Laboratory of Geological Processes and Mineral Resources, China University of Geosciences, 430074 Wuhan, Hubei, China

3. John de Laeter Centre, Curtin University, Kent Street, Bentley, WA 6102, Australia

4. Geology Department, Rhodes University, Artillery Road, Grahamstown 6140, South Africa

5. Division of Geological and Planetary Sciences, California Institute of Technology, 1200 E. California Boulevard, Pasadena, California 91125, USA

Abstract

Abstract The Great Oxidation Event (GOE) is marked by the loss of readily oxidizable detrital minerals and the onset of oxidative weathering. One of the oldest post-GOE weathering surfaces, which extends for almost 350 km along strike, occurs in Griqualand West, South Africa. It is best preserved east of the Blackridge thrust, where oxidized paleoweathering profiles are developed below the unconformity at the base of Mapedi-Gamagara red beds. In the Maremane Dome, the red beds preserve pisolitic hematite laterites, which indicate a highly oxygenated atmosphere and suggest hot and humid climatic conditions. The Mapedi and Gamagara Formations are undated east of the Blackridge thrust but were thought to be lithological correlatives of the ≥1.91 Ga Mapedi red bed sequence to the west. Here, we report a U-Pb zircon age of 1.25 Ga for a felsic tuff in red beds of the Mapedi Formation in the Kalahari manganese field. The new tuff age shows that the Mapedi red beds east of the thrust were deposited >650 m.y. after the Mapedi Formation to the west, and therefore they are part of a distinct Mesoproterozoic sequence. Based on lithologic and sedimentological similarities, the Mapedi-east and Gamagara formations are likely to be correlatives that were deposited on an ancient weathering surface at ca. 1.25 Ga. Our findings suggest that key evidence for a highly oxygenated atmosphere during the early Paleoproterozoic actually formed at ca. 1.25 Ga during a major episode of Mesoproterozoic oxidative weathering.

Publisher

Geological Society of America

Subject

Geology

Reference23 articles.

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2. Oxygen overshoot and recovery during the early Paleoproterozoic;Bekker;Earth and Planetary Science Letters,2012

3. Evidence for thrust faulting in Griqualand West, South Africa: Implications for stratigraphy and the age of the red beds;Beukes;Transactions–Geological Society of South Africa,1987

4. Tropical laterites, life on land, and the history of atmospheric oxygen in the Paleoproterozoic;Beukes;Geology,2002

5. Th-U-Pb zircon geochronology of the Palaeoproterozoic Hartley Formation porphyry by six methods, with age uncertainty approaching 1 Ma;Cornell;South African Journal of Geology,2016

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