Integrated Interpretation of Aeromagnetic and Aero-radiometric Data to Delineate Structures and Hydrothermal Alteration Zones Associated with Gold Mineralization in Parts of North-Central Nigeria

Bwamba, Jonah Ayuba *

Physics Department, University of Abuja, Abuja, Nigeria.

Abu Mallam

Physics Department, University of Abuja, Abuja, Nigeria.

*Author to whom correspondence should be addressed.


Abstract

Locating zones of possible gold mineralization potentials in parts of north-central Nigeria has been performed in this work by mapping lithology, structures, and hydrothermal alteration regions from aeromagnetic and aeroradiometric data. Some enhancement techniques such as first vertical derivative tilt derivative, analytic signal, and center for exploration targeting grid analysis were used for data analysis and interpretation. The CET grid analysis) reveals that the extracted lineaments are primarily oriented in the NE-SW, NNE-SWW and E-W directions. Two to three distinct magnetic zones; the very high, the moderate, and the low magnetic zonesare seen on the analytical signal map. While the high magnetic anomalies correlate with sandstone, siltstone, and shale, the zones of high magnetic anomalies in the northern half are associated to migmatite, gneisses, and biotite. The Euler deconvolution analysis indicates a broad range of depths for the magnetic sources in the region. The sources that are deeper than 2000 meters, between 1000 and 2000 meters, between 500 and 1000 meters, and shallower than 500 meters are specifically indicated by the depth estimates. Furthermore, potential mineralization zones were identified by demarcating areas with hydrothermal alteration zones that align with lineaments obtained from the first vertical derivative map of the studied region. The ternary image showed that coarse porphyritic biotite hornblende granite was primarily linked to the hydrothermally altered zones or mineralized environments in the research area.

Keywords: Gold, mineralization, basement, hydrothermal, alteration


How to Cite

Ayuba, Bwamba, Jonah, and Abu Mallam. 2024. “Integrated Interpretation of Aeromagnetic and Aero-Radiometric Data to Delineate Structures and Hydrothermal Alteration Zones Associated With Gold Mineralization in Parts of North-Central Nigeria”. Asian Journal of Geological Research 7 (2):136-53. https://www.journalajoger.com/index.php/AJOGER/article/view/161.

Downloads

Download data is not yet available.

References

Abdelrahman EM, Soliman KS, El-Araby TM, Abo-Ezz ER and Essa KS A least-squares standard deviation method to interpret magnetic anomalies due to thin dikes. Near Sur Geophys. 2009;7:41–46.

Akbar S, Fathianpour N. Improving the curie depth estimation through optimizing the spectral block dimensions of the aeromagnetic data in the Sabalan geothermal feld. J Appl Geophy. 2016;135:281–287.

Le Maire P, Munschy M. 2D Potential feld theory using complex algebra: New equations and vizualisation for the interpretation of potential feld data. Geophysics. 2018;83:J1–J13.

Arinze IJ, Emedo CO. Integrated geophysical investigation for shallow-scale massive (Pb-Zn) sulphide and barite exploration in the abakaliki and obubra mining districts (AOMD), Southeastern Nigeria. Min Metall Explor. 2021;38:381–395.

Bwamba, Jonah Ayuba, Abu Mallam and Abel U. Osagie. Characterization of hydrothermal alteration zones in parts of north-central basement complex of Nigeria for Solid Mineral Deposits. Earth Sciences Pakistan. 2024;8(2):72-79.

El - Sadek MA. Application of thorium-normalized airborne radio-spectrometric survey data of Wadi Araba area, North- eastern Desert, Egypt, as a guide to the recognition of probable subsurface petroleum accumulations. Applied Radiation and Isotopes, U.S.A. 2002;57:121 – 130.

Mehanee S, Essa KS, Diab ZE. Magnetic data interpretation using a new r-parameter imaging method with application to mineral exploration. Nat Resour Res. 2021;30:77–95.

Goldfarb RJ, Groves DI. Orogenic gold: Common or evolving fl uid and metal sources through time,” Lithos. 2015;233:2–26.DOI: 10.1016/j.lithos.2015.07.011

Saibi H, Azizi M, Mogren S. Structural investigations of afghanistan deduced from remote sensing and potential field data, Acta Geophysica. 2016;64(4):978–1003.DOI: 10.1515/acgeo-2016-0046

Saadi NM, Aboud E, Saibi H, Watanabe K. Integrating data from remote sensing, geology and gravity for geological investigation in the tarhunah area, Northwest libya, Int J Digit Earth. 2008;1(4):347–366.DOI: 10.1080/17538940802435844

Bersi M, Saibi H, Chabou MC. Aerogravity and remote sensing observations of an iron deposit in Gara Djebilet, southwestern Algeria, Journal of African Earth Sciences. 2016;116:134–150.DOI: 10.1016/j.jafrearsci.2016.01.004

Azizi M, Saibi H, Cooper GRJ. Mineral and structural mapping of the Aynak-Logar Valley (eastern Afghanistan) from hyperspectral remote sensing data and aeromagnetic data, Arabian Journal of Geosciences 2015 8:12:10911–10918.DOI: 10.1007/S12517-015-1993-2

Pendry JB, Holden AJ, Robbins DJ, Stewart WJ. Magnetism from conductors and enhanced nonlinear phenomena, IEEE Trans Microw Theory Tech. 1999;47(11):2075–2084.DOI: 10.1109/22.798002

Olomo KO, Bayode S, Alagbe OA, Olayanju GM, Olaleye OK. Aeromagnetic mapping and radioelement influence on mineralogical composition of mesothermal gold deposit in part of ilesha schist belt, Southwestern Nigeria, NRIAG Journal of Astronomy and Geophysics. Dec. 2022;11(1):177–192.DOI: 10.1080/20909977.2022.2057147

Schetselaar EM, Harris JR, Lynds T, De Kemp EA. Remote predictive mapping (RPM): A strategy for geological mapping of canada north, Journal of geoscience, Canada. 2007;34:93–111.

Komolafe AA, Kuria ZN, Woldai T, Noomen M, Yekini A, Anifowose B. Integrated remote sensing and geophysical investigations of the geodynamic activities at lake magadi, Southern Kenyan Rift. 2012;2012.DOI: 10.1155/2012/318301

Palomera AD. Application of remote sensing and geographic information systems for mineral predictive mapping, Deseado Massif, Southern Argentina by, University of Twente, ITC Thesis; 2004.

El- Sadek MA, Ammar AA, Sabry AM. Aeroradiospectro- metry in the lithological mapping and environmental monitoring of Wadi Araba area. The Arabian Journal for Science and Engineering. 2002;27(2A):131 –148.

Behnia P, Harris JR, Rainbird RH. Williamson MC, Sheshpari M. Remote predictive mapping of bedrock geology using image classification of Landsat and SPOT data, western Minto Inlier, Victoria Island, Northwest Territories, Canada,” Int J Remote Sens. Nov. 2012;33(21):6876–6903.DOI: 10.1080/01431161.2012.693219

Dickson BL, Scott KM. Interpretation of aerial gammaray surveys-adding the geochemical factors, Journal of Australian Geology and Geophysics. 1997;17(2): 187–200.

Sayed E, Selim I. The use of magnetic and geo-electrical data to delineate the subsurface structures and groundwater potentiality in Southeastern Sinai, Egypt, Springer, 2013;1479– 1494.DOI: 10.1007/s12665-013-2234-1

Keating P, Pilkington M. Euler deconvolution of the analytic signal and its application to magnetic interpretation. 2004;165–182.

Boszczuk P, Zhen L, Roy P, Lacroix S, Cheilletz A. A 3D gravity data interpretation of the Matagami mining camp, Abitibi Subprovince, Superior Province, Québec, Canada Application to VMS deposit exploration. 2011;75:77–86.DOI: 10.1016/j.jappgeo.2011.06.031

Gaafar IM. Geophysical signature of the vien-type uranium mineralization of Wadi Eishimbai, Southern Eastern Desert. 2012;1185–1197.DOI: 10.1007/s12517-010-0263-6

El-Sadek MA. Radiospectrometric and magnetic signatures of a gold mine in Egypt. Journal of Applied Geophysics. Netherlands, Elsevier B. V. 2009;67:34 -43.

Wang J. et al., Lithologic mapping test for gravity and magnetic anomalies A case study of gravity – magnetic anomaly pro fi le in the eastern segment of the China – Mongolia border, J Appl Geophy. 2015;117:23–31.DOI: 10.1016/j.jappgeo.2015.03.020

Aliyu SB, Adetona AA, Rafiu AA, Ejepu J, Adewumi T. Delineating and Interpreting the gold veins within Bida and Zungeru Area, Niger State Nigeria, Using Aeromagnetic and Radiometric Data. Pakistan Journal of Geology. 2021;5(2):41-50.DOI: 10.2478/pjg-2021- 0006

Imasuen OI, Olatunji JA, Ibitoye VT. Geological observations of basement rocks, around Ganaja, Kogi state, Nigeria. Jour. Sci. Multidiscip. Res. 2010;2:87-102.

Amigun JO, Afolabi O, Ako BD. Euler 3-D deconvolution of analytical signal of magnetic anomalies over iron ore deposit in Okene, Nigeria. Jour. Emerging Trends Engg. Appld. Sci. (JETEAS). 2012;3(4):711-717

Anudu GK, Onuba LN, Onwuemesi AG, Ikpokonte AE. Analysis of aeromagnetic data over Wamba and its adjoining areas in North Central Nigeria. Earth Sci. Res. Jour., v. 2012;16(1):25-33.

Abbass AA, Mallam A. Estimating the thickness of sedimentation within lower benue basin and upper Anambra Basin, Nigeria, using both Spectral Depth Determination and Source Parameter Imaging. Geophysics; 2013.

Daniel E, Jimoh R, Lawal K. Delineation of gold mineral potential zone using high resolution aeromagnetic data over part of Kano State, Nigeria. Journal of Geology and Geophysics. 2019;8:464.DOI: 10.35248/2381-8719.464

Ayuba RA, Nur A. Analysis of high resolution aeromagnetic data and satellite imagery for mineral potential over parts of Nasarawa and environs. North-Central Nigeria. International Journal of Scientific and Technology Research. 2018;7(6).

Jamaluddeen SS, Aku MO, Saleh M, Bunawa AA, Sharafa SB. A reconnaisance study to delineate the potential mineral zones around the schist belt areas of Kano State, Nigeria using airborne magnetic data. Journal of Geology and Mining Research. 2018;11(2):14-21.

Rahaman MA. Recent advances in the study of the basement complex of Nigeria. In Precambrian Geol. Niger. In Bull. 1988;32:11-43.

Obaje NG. The basement complex. In: Geology and Mineral Resources of Nigeria. Lecture Notes in Earth Sciences, vol 120. Springer, Berlin, Heidelberg; 2009.Available:https://doi.org/10.1007/978-3-540- 92685-6_2

Geosoft, Oasis montaj Viewer 7.0 The core software platform for working with large volume spatial data Quick Starttm Tutorial; 2008.

Milligan PR, Gunn PJ. Enhancement and presentation of airborne geophysical data, AGSO J. Geol. Geophys. 1997;17(2):63–75.

Nabighian MN. The analytic signal of two-dimensional magnetic bodies with polygonal cross- section: Its properties and use for automated anomaly interpretation, Geophysics. 1972;37(3): 507–517.

Verduzo B, Fairhead JD, Green CM, MacKenzie C, New insights into magnetic derivatives for structural mapping: The Leading Edge, v. 2004;23:116-119.

Nabighian MN, Hansen RO. Unification of euler and werner deconvolution in three dimensions via the generalized hilbert transform. Geophysics. 2001;66:1805-1810.

Shives RBK, Charbonneau BW, Ford KL. The detection of potassic alteration by gamma ray spectrometry - recognition of alteration related to mineralization, Radiation Geophysics. 1997;416:1–17.

Tawey MD, Alhassan DU, Adetona AA, Salako KA, Rafiu AA, Udensi EE. Application of aeromagnetic data to assess the structures and solid mineral potentials in part of north central Nigeria. Journal of Geography, Environment and Earth Science International. 2020;24(5):11-29. 2020; Article no Journal of Geography, Environment and Earth Science International 24(5):11-29, 2020; Article no.JGEESI.58030 ISSN: 2454-7352. JGEESI.58030 ISSN: 2454-7352

Akinlalu AA. Radiometric mapping for the identifcation of hydrothermally altered zones related to gold mineralization in IfeIlesa Schist Belt, Southwestern Nigeria. Indones. J. Earth Sci. 2023;3:A519–A519.

El-Sadek MA Using of airborne gamma-ray spectrometric data to the exposure of potassic alteration -recognition of alteration relates to gold mineralization. Applied Radiation and Isotopes. 2022; 190:110511.

Salako KA. Depth to basement determination using source parameter imaging (SPI) of aeromagnetic data: An application to upper Benue Trough and Borno Basin, North East Nigeria. Academic Res. Internat., v. 2014;5(3):74-86.