Environmental Impact of Artisanal and Small-Scale Gold Mining in Borgu Local Government Area

Authors

Mukaila O. O

Haleem Educational Centre, New Bussa, Niger State (Nigeria)

Abdulraman S. O

Department of Material Science and Engineering Kwara State University, Malete, Ilorin (Nigeria)

Ayuba A. B

Department of Product Development and Engineering, National Institute for Freshwater Fisheries Research, New Bussa, Niger State (Nigeria)

Jimoh I

Works Department, Moro Local Government Bode Saadu, Kwara State (Nigeria)

Article Information

DOI: 10.51244/IJRSI.2025.120800135

Subject Category: Environment

Volume/Issue: 12/8 | Page No: 1555-1562

Publication Timeline

Submitted: 2025-08-06

Accepted: 2025-08-11

Published: 2025-09-13

Abstract

This study was conducted to assess the environmental impact of artisanal and small-scale gold mining in Borgu Local Government Area, Niger State, located in North Central Nigeria. Samples were gathered from areas presumed free of gold mining activities to serve as controls, as well as from gold processing (washing) sites and downstream locations along Mayera water. These samples were analysed at the National Institute for Freshwater Fisheries Research (NIFFR) central laboratory for heavy metals using atomic absorption spectrometry (AAS). The levels of cadmium, copper, chromium, iron, lead, and mercury were measured using AAS techniques. The concentrations found in samples from the control site (upstream) are cadmium (0.001mg/L) copper (0.006mg/l), chromium (0.025mg/l), iron (.01mg/l) lead (0.009mg/l) and mercury (.0088mg/l) are all below the acceptable permissible limit of WHO/NAFDAC. While the result from the mining processing (washing) site show a very high increase in the heavy metal concentration of cadmium (0.008mg/L) copper (0.032mg/l), chromium (0.091mg/l), iron (0.447mg/l) lead (0.032mg/l) and mercury (0.031mg/l).the mean concentration of cadmium are (0.0.0058mg/l),chromium(0.027mg/l) and iron (0.1624) on(0.1624mg/l) are below the acceptable permissible limit of NAFDAC while copper(0.02mg/l),lead(0.0257mg/l) and mercury(0.0267mg/l)are above the acceptable permissible limit of NAFDAC. Cadmium (0.0.0058mg/l), copper (0.02mg/l), chromium (0.027mg/l) and iron (0.1624) are below WHO limit while, lead (0.0257mg/l) and mercury (0.0267mg/l)/l) are above the acceptable permissible limit of WHO. The result shows heavy metal concentration due to artisanal and small-scale mining activities in the Borgu local government which is the most silent but significant environmental side effect.

Keywords

Gold mining, Artisanal, heavy metals, Lead poisoning

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References

1. ⦁ Adesoji O.H (2014). Assessing the environmental impact of inland sand mining in parts of Ogun state Nigeria Ethiopian journal of environment studies and management. [Google Scholar] [Crossref]

2. ⦁ Afolayan D. O (2021)Safe mining assessment of artisanal barite mining activities in Nigeria Mining 2021, 1, 224-240 https://doi.org/10.3390/mining1020015 MDPI. [Google Scholar] [Crossref]

3. ⦁ Ako T.A, Onoduku, U, S.,Oke S.A., ADAMU A., Ali S.E. and Ibrahim A.T. (2014). Environmental impact of artisanal gold mining in Luka , Minna Niger state north central Nigeria Journal of geoscience and geometrics vol 2 no 1 28-37 http:/pubs.sciepub.com. Environmental law institute (2014) [Google Scholar] [Crossref]

4. ⦁ Ahmed F Ali ETAL, (2018). Environmental issues and the prospects of mining in Nigeria Dutse Journal of pure and Applied Science (DUJOPAS) VOL 4 NO 2 [Google Scholar] [Crossref]

5. ⦁ Awomeso J.A etal (2017). Human health and environmental assessments of small-scale and artisanal mining activities in the Gold city of Ijesha Land, Southwestern Nigeria. Environmental system research DOI 10.1186/s40068-017-0095-4 [Google Scholar] [Crossref]

6. ⦁ Hentschel R & hruschka F (2002). Global report on artisanal and small-scale mining international labour organization London: IIED and WBCSD MMSD [Google Scholar] [Crossref]

7. ⦁ Kelvin N Funoh (2014). The impact of artisanal gold mining on local livelihoods and the environment in the forested area of Cameroon. Center for international forestry research [Google Scholar] [Crossref]

8. ⦁ Medecins sans Frontieres (MSF). Nigeria country security and safety plan-draft1, May 2010. [Google Scholar] [Crossref]

9. ⦁ Muibat O. F (2016). heavy metal pollution from gold mines: environmental effects and bacterial strategies for resistance. International journal of environmental research and public health MPDI. https://www.ncbi.nlm.nih.gov. [Google Scholar] [Crossref]

10. ⦁ Mustafa Ibrahim Alhaji, Ezeamaka Cyril Kanayochukwu (2020). Spatial location of artisanal mining activities in Niger state and its implication to the environment international journal of engineering applied sciences and technology vol.5 issue1 page 711-719 [Google Scholar] [Crossref]

11. ⦁ Nnaji JC Omotugba S K (2016). Risk of toxic metal contamination in gold mining and processing area of Borgu and Mashegu local government area of Niger state, Nigeria International research journal of chemistry and chemical science vol 3(1) pp 033-036 [Google Scholar] [Crossref]

12. ⦁ Tieguhong J.C Ingram V.and Schue J . (2009). Impact of artisanal gold mining om livelihoods and the environment in the sangba tri – national park (TNS) land scape, Congo basin Yaoundé Cameroon, CIFOR [Google Scholar] [Crossref]

13. ⦁ Viaga M.M. (2013). Mercury in artisanal gold mining in Latin America: facts, fantasies and solutions, UNIDO Expert Group Meeting-introducing new technologies for abatement of global mercury pollution deriving from artisanal gold mining, Vienna Austria. [Google Scholar] [Crossref]

14. ⦁ WHO (2016). Technical paper #1: Environmental and occupational health hazards associated with artisanal and small-scale gold mining. http://www.who.int. [Google Scholar] [Crossref]

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