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Isotopic geochemistry (O,Sr, Pb) of the Golda Zuelva and Mboutou anorogenic complexes,North Cameroun: mantle origin with evidence for crustal contamination
Authors:Hervé Jacquemin  Simon MF Sheppard  Philippe Vidal
Institution:1. Laboratoire de Pétrologie, Universitéde Nancy I, B.P. 239, 54506 Vandoeuvre Cedex France;2. Centre de Recherches Pétrographiques et Géochimiques, B.P. 20, 54501 Vandoeuvre Cedex France;3. Centre Armoricain d''Etude Structurale des Socles (CNRS), Universitéde Rennes, 35042 Rennes France
Abstract:The annular (6–8 km diameter) Golda Zuelva and Mboutou anorogenic complexes of North Cameroun are composed of a suite of alkaline plutonic rocks ranging from olivine gabbro to amphibole and biotite granite. For the Mboutou complex there are two overlapping centres. In the Golda Zuelva complex the plutonic rocks are associated with a later hawaiite to rhyolite volcanic suite. A Rb/Sr whole rock isochron gives an age of 66±3 Ma for the Golda Zuelva granites, with initial87Sr/86Sr ratio of 0.7020, and demonstrates that plutonism and volcanism were essentially contemporaneous and probably cogenetic. For Golda Zuelva and the north Mboutou centre18O/16O (5.6–6.2),87Sr/86Sr (0.7030–0.7045) and Pb isotopic ratios (207Pb/204Pb: 15.60–15.64) support a mantle origin for the initial magmas. Unlike Sr isotopes, the O isotopic ratios of the granitic end members at Golda Zuelva (~7.5) indicate crustal contamination. Post-magmatic alteration was not significant.For the younger south Mboutou centre the O-, Sr- and Pb-isotopic data indicate more extensive magma-crust interaction and in a different (higher level?) crustal environment with δ18O granite=3.3‰,87Sr/86Sr ratios up to 0.706 and Pb isotopic ratios more markedly displaced from the oceanic volcanic field. The low-18O granites probably record, at least in part, a magmatic process with subsequent minor post-magmatic alteration effects. The major and trace element systematics between the north and south Mboutou centres are directly comparable. The evolution of the magmas were dominated by fractional crystallisation and progressive crustal contamination processes.
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