Gravity Method for Delineation of Iron Ore Deposit Geometry in Oko, Southwestern Nigeria

Authors

Keywords:

Bouguer Anomaly, Depth Estimation, Depositional Thickness, Gradient Amplitude Method, Oko Banded Iron Formation (BIF)

Abstract

Solid mineral deposits possess significant economic advantage to a nation if they are properly mapped and exploited. Several researches have shown that there are myriads of solid mineral resource deposits in Nigeria with significant portions in the southern part of the nation, but there is a knowledge gap in the quantity and quality of geophysical and geological information available about them. This study is therefore aimed at providing more information by estimating the thickness and depth to iron ore formations in Oko, South-Western Nigeria using gravity method of geophysical survey due to its efficiency in mapping the density contrast between the iron deposit and the host rocks. Ground gravity survey was carried out at 220 gravity stations and 11 traverses using a Scintrex CG-5 gravimeter to cover a 25000m2 area. Coordinates, time and elevation were also taken at each gravity station, gravity reductions and removal of regional trend were also carried out. Qualitative analysis using first vertical and horizontal derivatives was used to identify positive bouguer anomalies in the map while quantitative analysis using Half width, Peter’s half slope and Gradient Amplitude methods with Euler de-convolution and source parameter imaging methods were applied to image the sub-surface and to determine the depths to top and centre of the anomalous bodies. The qualitative analysis revealed E-W trending geological structures which Euler solution confirmed to be a fault. Depth estimation revealed that average depth to the centre of the deposit ranged from 5.61±2.48m to 14.57±6.45m and the depth to top estimates ranged from 6.77±3.14m to 11.28±5.24m while the thickness of the ore body was also estimated to range between 3m to about 20m. The study revealed that the Oko banded iron formation (BIF) is occurring in lineaments trending majorly in the E-W direction with a depositional thickness of about 20m.

Dimensions

Abuga, V.O, 2013, Geophysical Investigation of Mbeu Iron Ore Deposit in Meru County using Gravity Method. M.Sc. Thesis. Kenyatta University, Kenya.

Abuga,V., Moustapha., Migwi., Ambusso, W. Muthakia, G (2013). Geophysical Exploration of Iron Ore Deposit in Kimachia Area in Meru County in Kenya, Using Gravity and Magnetic Techniques. International Journal of Science and Research Vol 2:104-108

Afolabi, O. A., Kolawole, L. L., Abimbola A. F. (2013), Preliminary study of the geology and structural trends of lower Proterozoic basement rocks in Ogbomosho, South-western Nigeria.

Hinze, W. J., Von Frese, R. R. B., and Saad, A. H. (2013). Gravity and Magnetic Exploration: Principles, Practices, and Applications. Cambridge: Cambridge University Press.

Keary, P., Brooks, M and Ian, Hill, I. (2002).An Introduction to Geophysical Exploration. London, Blackwell Publishing.126-154.

Layade, G. O., Adewumi O., Babatunde, V., (2021), Application of gravity survey for the investigation of the presence and depth of iron ore deposits, Petroleum and Coal (2), 577-588.

Nguru, J. M. (2019). Geophysical Exploration for Iron Ore Prospect using Gravity Method in Meru County, Kenya (Doctoral dissertation, Kenyatta University).

Oladunjoye, M. A., Olayinka, A. I., Alaba, M., & Adabanija, M. A. (2016). Interpretation of high resolution aeromagnetic data for lineaments study and occurrence of Banded Iron Formation in Ogbomoso area, Southwestern Nigeria. Journal of African Earth Sciences, 114, 43-53.

Rahaman, M. A., (1976), Review of the Basement Complex of South-western Nigeria. In C.A. Kogbe (ed) Geology of Nigeria. Elizabeth Publishing Co. Lagos. 41 – 58 pp.

Reid, A.B., Allsop, J. M., Granser, H., Millett, A. J., and Somerton, I.W., (1990), Magnetic interpretation in three dimensions using Euler deconvolution. Geophysics, 55: 80-91.

Shendi, E. H., Ismail, A. M., and Attia, T. E. (2008). On the Use of Gravity and Magnetic Anomalies for Locating Probable Areas of Metallic Mineralization in South Sinai, Egypt. Arab Journal of Geosciences, 1: 137-147.

Williams, H. A., Cassidy, J., Locke, C. A., Sporli, K. B., 2006, Delineation of a large ultramafic massif embedded within a major SW Pacific suture using gravity methods, Tectonophysics, Volume 424, issues 1-2, pg. 119-133.

Published

2026-09-11

How to Cite

Adegoke, J. A., Aderemi, F. L., & Sogeyinbo, S. A. (2026). Gravity Method for Delineation of Iron Ore Deposit Geometry in Oko, Southwestern Nigeria. Nigerian Journal of Physics, 35(S), 194-202. https://doi.org/10.62292/njp.v35(s).2026.639

How to Cite

Adegoke, J. A., Aderemi, F. L., & Sogeyinbo, S. A. (2026). Gravity Method for Delineation of Iron Ore Deposit Geometry in Oko, Southwestern Nigeria. Nigerian Journal of Physics, 35(S), 194-202. https://doi.org/10.62292/njp.v35(s).2026.639

Most read articles by the same author(s)