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Archaean high-K granitoids produced by remelting of earlier Tonalite–Trondhjemite–Granodiorite (TTG) in the Sangmelima region of the Ntem complex of the Congo craton,southern Cameroon
Authors:Cosmas Kongnyuy Shang  Muharrem Satir  Emmanuel Nkonguin Nsifa  Jean-Paul Liégeois  Wolfgang Siebel  Heiner Taubald
Affiliation:(1) Institute of Geosciences, University of Tuebingen, Wilhelmstrasse 56, 72074 Tuebingen, Germany;(2) Department of Earth Sciences, University of Yaounde I, BP 812, Yaounde, Cameroon;(3) Isotope Geology Section, Africa Museum, B-3080 Tervuren, Belgium
Abstract:
We present a geochemical and isotopic study that, consistent with observed field relations, suggest Sangmelima late Archaean high-K granite was derived by partial melting of older Archaean TTG. The TTG formations are sodic-trondhjemitic, showing calcic and calc-alkalic trends and are metaluminous to peraluminous. High-K granites in contrast show a potassic calc-alkaline affinity that spans the calcic, calc-alkalic, alkali-calcic and alkalic compositions. The two rock groups (TTG and high-K granites) on the other hand are both ferroan and magnesian. They have a similar degree of fractionation for LREE but a different one for HREE. Nd model ages and Sr/Y ratios define Mesoarchaean and slab-mantle derived magma compositions respectively, with Nb and Ti anomalies indicating a subduction setting for the TTG. Major and trace element in addition to Sr and Nd isotopic compositions support field observations that indicate the derivation of the high-K granitic group from the partial melting of the older TTG equivalent at depth. Geochemical characteristics of the high-K granitic group are therefore inherited features from the TTG protolith and cannot be used for determining their tectonic setting. The heat budget required for TTG partial melting is ascribed to the upwelling of the mantle marked by a doleritic event of identical age as the generated high-K granite melts. The cause of this upwelling is related to linear delamination along mega-shear zones in an intracontinental setting.
Keywords:High-K granites  TTG  Partial melting  Major and trace element composition  Sr and Nd systematics
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