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Soil health in a conflict-affected area: An open-source Google Earth Engine framework to map land degradation in Gaza

  • Michele Torresani
  • , Omar Darissa
  • , Michel Hanania
  • , Claudio Zaccone
  • , Oussama Bouaicha
  • , Alessio Russo
  • , Heribert Insam
  • , Leonardo Montagnani
  • , Ilaria Fracasso
  • , Raphael Tiziani
  • , Roberto Tognetti
  • , Stefano Cesco
  • , Franz Zehetner
  • , Marco Fusi
  • , Duccio Rocchini
  • , Ciro Sannino
  • , Benedetta Turchetti
  • , Pietro Buzzini
  • , Anna Sandionigi
  • , Gianmarco Mugnai
  • Vittorio Capozzi, Giuseppe T. Cirella, Manuel Esperon-Rodriguez, Elisa GAMALERO, Tanja Mimmo, Roy Neilson, Luigimaria Borruso

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Armed conflict accelerates soil and vegetation degradation, but field assessments and monitoring are often only possible at a later stage and/or indirectly, for example, through remote sensing data. We used the Dynamic World v1, a land-cover open-source dataset derived from Sentinel-2 imagery, to quantify land-cover change in Gaza (Palestinian territories) between September 2023 and September 2025. After cloud/shadow masking and 10 m spatial estimation, cropland and grassland declined from 5941 to 2056 ha (−65%), while bare soil expanded from 3918 to 17,663 ha (+351%). A comparator region in Israel showed modest changes (−4.5% and +3.4%, respectively), indicating that the Gaza trends are conflict-related rather than regional. High-resolution imagery reveals widespread transition from vegetated surfaces to debris fields and exposed soils. Our findings corroborate recent analyses based on commercial imagery while extending the assessment to 2025 through a fully open-source workflow. We present a fully reproducible workflow in Google Earth Engine to document and quantify land degradation using open Earth observation data under conditions of restricted ground access. These results provide a quantitative baseline for assessing soil and vegetation damage in conflict-affected areas.
Lingua originaleInglese
RivistaProgress in Physical Geography
DOI
Stato di pubblicazionePubblicato - 2026

OSS delle Nazioni Unite

Questo processo contribuisce al raggiungimento dei seguenti obiettivi di sviluppo sostenibile

  1. SDG 1 - Sconfiggere la povertà
    SDG 1 Sconfiggere la povertà
  2. SDG 2 - Sconfiggere la fame
    SDG 2 Sconfiggere la fame
  3. SDG 15 - La vita sulla terra
    SDG 15 La vita sulla terra
  4. SDG 16 - Pace, giustizia e istituzioni solide
    SDG 16 Pace, giustizia e istituzioni solide

Keywords

  • food security
  • open data
  • plant health
  • remote sensing
  • soil biodiversity

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