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Assessment of the Erosion and Outflow Intensity in the Rif Region under Different Land Use and Land Cover Scenarios

  • Abdessalam Ouallali
  • , Shuraik Kader
  • , Youssef Bammou
  • , Mourad Aqnouy
  • , Said Courba
  • , Mohamed Beroho
  • , Hamza Briak
  • , Velibor Spalevic
  • , Alban Kuriqi
  • , Artan Hysa
  • Faculty of Sciences and Technologies
  • University Mohammed V in Rabat
  • Griffith University
  • Faculté Polydisciplinaire-Safi Université Cadi Ayyad
  • Moulay Ismail University
  • Faculty of Sciences and Techniques
  • Mohammed VI Polytechnic University
  • University of Montenegro
  • CERIS – Civil Engineering Research and Innovation for Sustainability
  • UBT – Higher Education Institution
  • Faculty of Architecture and Engineering
  • Epoka University

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

The port of Tangier Med is essential due to its strategic location, as it is an important trading center linking Europe, North America, and Africa. However, the increased rates of downstream sediment transportation put pressure on the sustainable future of the port. Thus, assessing the existing erosion rates and future improvement scenarios is imperative for planning sustainable management at the catchment level. We utilize the Erosion Potential Model (EPM) combined with the Intensity of Erosion and Outflow (IntErO) algorithm to assess the erosion and outflow intensity and to distinguish the sediment-producing areas in the R’mel watershed. The port’s proximity at the bottom of the slope opposite the R’mel Dam is relevant in this context. Initial results show an average erosion rate of 13 t/ha/year. Quarry operations were identified as the primary sediment source, as indicated by the factors contributing to erosion. The qualitative PAP/RAC (Priority Actions Program/Regional Activity Center) model was used to assess the development trends in the watershed, confirming a clear tendency toward irreversible degradation in the quarry areas. Considering that the mined carbonate lithology represents 23.77% of the total area of the catchment, the situation in the region could deteriorate if quarry operations continue. The simulation of quarry rehabilitation scenarios through land use and land cover change (LULC) with IntErO shows that reforestation of quarries can significantly reduce erosion rates (4.78 t/ha/year) compared to their conversion to agricultural land. This study underlines the effectiveness of IntErO, based on the EPM model, in quickly and effectively mapping and quantifying water erosion.

Original languageEnglish
Article number141
JournalLand
Volume13
Issue number2
DOIs
StatePublished - Feb 2024
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • Erosion Potential Model (EPM)
  • Intensity of Erosion and Outflow (IntErO) algorithm
  • quarry operations
  • reforestation
  • R’mel watershed

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