An Integrated Aeromagnetic, Source-Depth, and Radiometric Geophysical Framework for the Pan-African Basement Complex of the Oban Massif and Obudu Plateau
DOI:
https://doi.org/10.4314/Keywords:
Aeromagnetic interpretation; CET lineament analysis; Euler deconvolution; K-Th-U radiometric mapping; Pan-African basement; Oban MassifAbstract
The Precambrian basement of southeastern Nigeria, encompassing the Oban Massif and Obudu Plateau, is closely linked to the Cameroon Mobile Belt and is rich in gold, rare metals, and radioactive elements. This study employs an integrated aeromagnetic–radiometric approach for both qualitative and quantitative analyses to explore the tectonic structures of these basement terranes. High-resolution aeromagnetic and radiometric datasets were processed using seven enhancement filters, Centre for Exploration Targeting (CET) lineament analysis, Source Parameter Imaging (SPI), Standard Euler Deconvolution (SED), two-dimensional forward magnetic modelling, and K–Th–U radiometric mapping. The aeromagnetic datasets reveal fundamentally contrasting structural fabrics: the Obudu Plateau is characterized by dominant NE–SW lineaments (35–55° azimuth), whereas NW dominates the Oban Massif–SE structural trends (130–150° azimuth), indicating contrasting deformation histories within the Pan-African orogenic belt. Reduced-to-pole magnetic anomalies range from −131.8 to +113.0 nT in the Obudu Plateau and from −34.2 to +75.4 nT in the Oban Massif. At the same time, analytic signal amplitudes vary between 0.003 and 0.187 nT m⁻² and 0.0032 and 0.1836 nT m⁻², respectively, delineating structurally controlled shallow intrusive bodies and major lithological contacts. Source-depth modelling identifies a systematic four-tier basement architecture comprising shallow (<500 m), intermediate (500–1200 m), deep (1200–1750 m), and very deep (>1750 m; locally exceeding 2580 m) magnetic sources. SPI-derived depths (~100–2580 m) exhibit close agreement with Standard Euler Deconvolution solutions, with discrepancies generally less than 15%. Two-dimensional forward magnetic modelling resolves six basement blocks beneath the Oban Massif with magnetic susceptibilities ranging from 0.00130 to 0.00475 SI, corresponding to variably magnetized granitoids, gneisses, migmatites, and localized mafic intrusive bodies. Airborne radiometric mapping records maximum concentrations of K = 2.06%, Th = 33.89 ppm, and U = 5.81 ppm, with radioelement-enriched domains spatially coincident with the dominant structural fabrics, indicating that Pan-African shear systems strongly controlled granitoid emplacement, pegmatitic intrusion, and hydrothermal fluid migration. Integration of various datasets reveals the central-southwestern Oban Massif as the prime area for structurally controlled gold and Sn–Ta–Nb pegmatite mineralization. The southwestern and central Obudu Plateau are also promising for shear-hosted gold and U–Th-enriched granitoid systems. The study highlights that combining aeromagnetic and radiometric datasets reduces interpretational ambiguity and offers a reproducible exploration methodology suitable for similar Pan-African crystalline basement regions in West and Central Africa.
Published
Issue
Section
License
Copyright (c) 2026 Onasanwo A. Adesoji, Benjamin O. Omang*, Michael E. Omeka, Asinya Enah Asinya, Ekere E. Ukwang, Godwin Amah, Romeo A. Ojong (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
Similar Articles
- Ebenezer Agayina Kudamnya, Victor Etim Nyong, Ibrahim Kehinde Adebayo, Emmanuel Etim Okon, Alexander Abraham Oko, Godwin Inieke Joshua, Happiness Idoreyin Asuquo, Joseph Osumeje Osumeje, Felix Peter Irek, Aniekan Edet, Ntonzi Nganje, Christopher Iorfa Adamu, Azubuike Solomon Ekwere, Godwin Terwase Kave, A Multi-criteria Decision using the Analytical Hierarchy Process (AHP) for Delineation of Groundwater Potential Zones in Part of the Obudu-Massif, Nigeria , Communication In Physical Sciences: Vol. 13 No. 5 (2026): VOLUME 13 ISSUE 5
- Yomi B. Gideon, Felix B. Fatoye, Geology, Petrography and Geochemical Evaluation of Basement Rocks In Bakomba–Kabba Junction Area, Sheet 247 Lokoja SW, North Central, Nigeria , Communication In Physical Sciences: Vol. 11 No. 1 (2024): VOLUME 11 ISSUE 1
- C. Amos-Uhegbu, Aeromagnetic and Radiometric (Thorium) Data Interpretation for Kimberlite pipe(s) occurrence in Malumfashi North-Central Nigeria , Communication In Physical Sciences: Vol. 7 No. 4 (2021): VOLUME 7 ISSUE 4
- Ibe Chinedu Uduma, Orunna Chidiebere Victor, Aghaebita Ifeoma Chinwendu, A Review of the Petrography and Geochemical Characteristics of the Pan African Granites in the Nigerian Precambrian Basement Complex , Communication In Physical Sciences: Vol. 7 No. 4 (2021): VOLUME 7 ISSUE 4
- Samaila Garba Riskuwa, Ishak Yau Tanko, Mineralogical and Geochemical Characterization of Gold-Bearing Rocks in Mararaban Yauri, Northwestern Nigeria , Communication In Physical Sciences: Vol. 13 No. 7 (2026): Volume 13, Issue 7
- Jamilu Bala Ahmed II*, Ernest Orji Akudo, Spaceborne Fracture Network Mapping for Appraising Slope Stability, Building Structural Integrity and Groundwater Potential Distribution in Lokoja, Nigeria , Communication In Physical Sciences: Vol. 12 No. 7 (2025): VOLUME 12 ISSUE 7
- Kamureyina Ezekiel, Ruth Justine Ija, Victor Gambo Na’Allah, Subsurface Structural Analysis Using High Resolution Aeromagnetic Data In Guyuk-Shani And Environs: A Geophysical Approach To Hydrocarbon Prospectivity , Communication In Physical Sciences: Vol. 12 No. 7 (2025): VOLUME 12 ISSUE 7
- Henry Ekene Ohaegbuchu, Boniface Ikechukwu Ijeh, Paul Igienekpeme Aigba, Obinna Christian Dinneya, Integrated Geophysical Study of Geothermal and Mineralization Potential for Energy and Strategic Resources in the Lower Benue Trough, Nigeria , Communication In Physical Sciences: Vol. 12 No. 7 (2025): VOLUME 12 ISSUE 7
- Ahmed Usman`, Jimoh Raimi, Mahmood Umar, Mas’ud Shehu, Hydrogeophysical Evaluation of Groundwater Potential and Aquifer Protective Capacity in Akerebiata, Ilorin, Nigeria , Communication In Physical Sciences: Vol. 13 No. 3 (2026): Volume 13 Issue 3
- Akintunde Stephen Samakinde , Vincent Bailey Arohunmolase, A Review of Machine Learning-Based Geochemical Signature Analysis for Mineral Prospectivity Mapping. , Communication In Physical Sciences: Vol. 13 No. 1 (2026): VOLUME 13 ISSUE 1
You may also start an advanced similarity search for this article.



