Published September 2006 | Version v1
Journal article

Geology, Geochemistry and geotectonic setting of the pan-african granites and charnockites around Ado-Ekiti, Southwestern Nigeria

  • 1. Univ. of Ado-Ekiti, Ado-Ekiti (Nigeria). Dept. of Geology
  • 2. Federal Polytechnic, Ado-Ekiti (Nigeria). Dept. of Mineral Resources

Description

The geology, petrology and geochemistry of the coarse-grained and fine-medium-grained gneissic charnockites and the porphyritic biotite-hornblende and medium-grained older granites in the Ado-Ekiti area were studied. Xenoliths of schistose quartzite occur within these charnockitic and granitic rocks. The porphyritic older granite and the coarse grained charnockite occur in very close association in the field. All these rocks contain monazite, in their mineralogical composition, which indicate crustal input into their original magma. Aluminium-total iron-magnesium (AFM) plot for these rocks indicated that were calc-alkaline in nature and were formed in a subduction related tectonic setting. Percentage normative corundum versus mol Al/sub 2/O/sub 3/ (Na/sub 2/ K/sub 2/ O+CaO) plots for the older granites and the charnockites from the Ado-Ekiti area revealed that their original magma was derived from a mixed source (igneous and crustal). Y+Nb versus Rb for the older rare earth granites and the charnockites indicated that they originated from a volcanic are and within-plate environments. The normalized rare earth elements (REE) patterns showed that these rocks were genetically related, and the feldspar fractionation took place during their formation as revealed by Eu depletion patterns in the REE diagrams. The negative Eu/Eu* (ratio of absolute europium to normalized europium) anomaly and (La/Yb)/sub 2/) ratios higher than 5 obtained in these rocks indicated that they were emplaced through magmatic fractionation. The mixed magma from which these rocks were derived was formed in a back are tectonic setting where an ocean slab was subducted into the mantle leading to the generation of magma. Which intruded into the earlier formed rocks in a back are basin. The charnockites and the older granites were the end products of the differentiation of such magma. (author)

Additional details

Publishing Information

Journal Title
Pakistan Journal of Scientific and Industrial Research
Journal Volume
49
Journal Issue
5
Journal Page Range
p. 299-308
ISSN
0030-9885

INIS

Country of Publication
Pakistan
Country of Input or Organization
Pakistan
INIS RN
38037352
Subject category
S58: GEOSCIENCES;
Descriptors DEI
BIOTITE; GEOCHEMISTRY; GEOLOGIC STRUCTURES; GRANITES; MINERALS; NIGERIA; PETROLOGY; ROCKS
Descriptors DEC
AFRICA; CHEMISTRY; DEVELOPING COUNTRIES; GEOLOGY; IGNEOUS ROCKS; MICA; MINERALS; PLUTONIC ROCKS; ROCKS; SILICATE MINERALS