Dispersion of Trace Elements as Consequence of in-situ Weathering in granite-derived Tropical Soils in Southwestern Nigeria
O. Akinola Oluwatoyin and
A. Ola Olorun Olusola
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O. Akinola Oluwatoyin: Department of Geology, Faculty of Science, Ekiti State University, Ado-Ekiti, Nigeria
A. Ola Olorun Olusola: Department of Geology, Faculty of Science, Ekiti State University, Ado-Ekiti, Nigeria
International Journal of Research and Innovation in Applied Science, 2022, vol. 7, issue 10, 87-93
Abstract:
Trace elements composition of granite and tropical soils formed by in-situ weathering over the basement complex of Ikere-Ekiti, Ado-Ekiti and Igbrara-Odo areas of SW Nigeria is evaluated and reported. The granitoids exhibit chemical features such as is common to other granite bodies across the basement areas. The soil profiles typically have four different horizons with contrasting physical characteristics. Analytical result from ICP-MS technique revealed compositional variation along vertical direction within depth of the profiles. Trace element as average for the granite reveals low Tm (0.5 ppm), Eu (2.1 ppm), Co (5.1 ppm), Sc (7.2 ppm), Hf (7.6 ppm), Sm (12.6 ppm), and Th (30.5 ppm) values, while La (110 ppm), Ce (216 ppm), Cr (235.5 ppm), and Ba (963 ppm) show enrichments. All the soils have Sm, Eu, Th, Hf and Co contents below 10 ppm; Sc, La and Ce values fall between 10-100 ppm, while Cr and Ba contents fall between 200-1500 ppm. Variation between trace contents in granite and the derived soils as revealed along depths of the profile indicates greater mobility of Th, Sc and Ba during chemical weathering while Eu and Tm are least mobile. Pronounced compositional variation occur at relatively shallow (0-1m) depth in near surface area all the profiles.
Date: 2022
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Persistent link: https://EconPapers.repec.org/RePEc:bjf:journl:v:7:y:2022:i:10:p:87-93
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