1 Institute for Environmental Research of Guinea (IREG), Conakry, Guinea.
2 Maritime and Coastal Research Center (CEREMAC), Conakry, Guinea.
Received on 02 February 2025; revised on 21 March 2025; accepted on 29 March 2025
Extractive activities are generating major environmental transformations. This study analyzes the spatio-temporal dynamics of land use and their impacts on natural resources between 1992 and 2022.
An integrated approach combining remote sensing (Landsat 5–8 imagery, supervised classification) and socio-economic surveys (288 respondents, 50 households) was implemented. The diachronic analysis quantifies land-use changes across five classes: dense vegetation, agricultural land, settlements, bare soils/mining areas, and water bodies.
The observed transformations reveal critical environmental degradation within the AngloGold Ashanti mining area in Siguiri, characterized by a 16.27% decline in vegetation cover (2,356 km²) and a drastic 28.75% increase in degraded surfaces. Exceptional demographic growth (53.7% over 40 years) has intensified anthropogenic pressures and reshaped the rural economy: 75% of households are now engaged in artisanal gold mining. Both industrial mining (AngloGold Ashanti) and artisanal operations generate severe cumulative impacts, notably the systematic abandonment of non-rehabilitated sites.
These findings highlight the urgent need for sustainable mining governance in West Africa. The remote sensing-based methodology (accuracy >87%) demonstrates strong effectiveness for continuous environmental monitoring. The study advocates the integration of ecological restoration practices, stricter regulation of extractive activities, and local economic diversification.
Remote sensing; Land-use change; Gold mining; Environmental sustainability; Guinea; Ecosystem ecology
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Lucien SOLIE, Thierno Boubacar BAH, Fatoumata Binta Sombily DIALLO, Sogbè KEITA and Alpha Issaga Pallé DIALLO. Spatio-Temporal Land Use Dynamics and Environmental Impacts of Gold Mining: An Integrated Remote Sensing Analysis in the Siguiri Prefecture, Guinea (1992–2022). GSC Advanced Research and Reviews, 2026, 26(2), 079-091. Article DOI: https://doi.org/10.30574/gscarr.2026.26.2.0038