<?xml version="1.0" encoding="UTF-8"?>
<records>
<record>
<language>eng</language>
<publisher>Science and Education Publishing</publisher>
<journalTitle>American Journal of Water Resources</journalTitle>
<eissn>2333-4819</eissn>
<publicationDate>2026-09-01</publicationDate>
<volume>14</volume>
<issue>3</issue>
<startPage>55</startPage>
<endPage>62</endPage>
<doi>10.12691/ajwr-14-3-1</doi>
<publisherRecordId>AJWR20261431</publisherRecordId>
<documentType>article</documentType>
<title language="eng">Spatio-Temporal Dynamics of Soil Water Erosion Using Remote Sensing and Gis (Rusle): Case of the Aghien Lagoon Watershed (C&#244;te D'ivoire), 1987-2023</title>
<authors>
<author>
<name>Ouedraogo Mamadi</name>
<email>ouedpolo2@gmail.com</email>
<affiliationId>1</affiliationId>
</author>
<author>
<name>Dao Amidou</name>
<affiliationId>1</affiliationId>
</author>
<author>
<name>Diallo Seydou</name>
<affiliationId>1</affiliationId>
</author>
<author>
<name>Kamagate Bamory</name>
<affiliationId>1</affiliationId>
</author>
<author>
<name>Noufe D. Djibril</name>
<affiliationId>1</affiliationId>
</author>

</authors>
<affiliationsList>
<affiliationName affiliationId="1">Geosciences and Environment Laboratory, Faculty of Environmental Sciences and Management, NANGUI ABROGOUA University, Abidjan, C?te d¡¯Ivoire</affiliationName>




</affiliationsList>
<abstract language="eng">The Aghien Lagoon watershed belongs to the hydrographic system supplying drinking water to the Abidjan metropolitan area in southern C&#244;te d'Ivoire. This study aims to quantify and map the dynamics of soil water erosion in this watershed over the period 1987-2023, using remote sensing and geographic information systems. The Revised Universal Soil Loss Equation (RUSLE) was applied, combining five factors: rainfall erosivity (R), soil erodibility (K), slope length and steepness (LS), vegetation cover (C) and support practices (P). The R factor was estimated from CHIRPS data for four dates (1987, 2003, 2015 and 2023), and the C factor from the corresponding land-use maps. The results show a continuous worsening of erosion: the mean soil loss rises from 22.8 to 59.8 t ha?&#185; yr?&#185;, while the area subject to extreme erosion expands from 1.2% to 13.7% of the watershed. This dynamic coincides with the retreat of dense forest from 32.4% to 9.0% of the watershed, the fourfold increase of bare soils from 6.6% to 26.8%, and the rise of the mean C factor of emerged land (from 0.26 to 0.44), combined with record rainfall erosivity in 2023 (R = 368.17 against about 228 over 1987-2015): vegetation cover degradation appears as the main driver of erosion, amplified by recent rainfall forcing. These results help identify priority areas for erosion control, within a perspective of sustainable management of a strategic peri-urban watershed.</abstract>
<fullTextUrl format="pdf">https://pubs.sciepub.com/ajwr/14/3/1/ajwr-14-3-1.pdf</fullTextUrl>
<keywords language="eng"><keyword>Erosion</keyword>
<keyword>Remote sensing</keyword>
<keyword>GIS</keyword>
<keyword>RUSLE</keyword>
<keyword>Aghien Lagoon</keyword>
<keyword>C?te d'Ivoire</keyword>
</keywords>
</record>
</records>
