SSESSMENT OF LAND DEGRADATION USING REMOTE SENSING APPROACH

dc.contributor.authorEkundayo Abayomi ADESINA, Huzaifa Ishaq MUHAMMAD
dc.date.accessioned2025-04-16T21:49:41Z
dc.date.issued2023-09-23
dc.description.abstract. Land degradation leads to the alteration of ecological and economic functions due to a decrease in the productivity and quality of the land. Land degradation over Minna, Niger State, was assessed using geospatial techniques. Studies between the rainfall and NDVI used on human-induced and climate-induced land degradation were correlated. Landsat images on a decadal scale (2000–2019) were processed and classified using a maximum likelihood classifier. NDVI trends are not due to rainfall dynamics to human actions. Averagely low, about 24.14%, correlation was found between the observed land degradation and the precipitation factor, yielding more than 50% congruence in degradation induced by human activities. The study discovered that the built-up and bare surfaces are increasing. The long-term changes in built-ups were a 96% increase between 2000 and 2019; conversely, a sharp decrease in vegetative lands of about –19.38%. Based on the terrain analysis, locations have less steep and moderate slopes in the study area due to continuous urban expansion and demographic pressure. Consequently, over time, available lands not degraded within the study areas would be reduced. The study recommended a proper land management system of land use allocation and land cover activities.
dc.description.sponsorshipSelf
dc.identifier.issnISSN 2029-6991 / eISSN 2029-7009
dc.identifier.urihttp://repository.futminna.edu.ng:4000/handle/123456789/768
dc.language.isoen
dc.publisherGeodesy and Cartography
dc.subjectland degradation
dc.subjectremote sensing and GIS techniques
dc.subjectrainfall dynamics
dc.subjectNDVI
dc.subjecthuman-induced
dc.subjectclimate-in duced and precipitation factor.
dc.titleSSESSMENT OF LAND DEGRADATION USING REMOTE SENSING APPROACH
dc.typeArticle

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