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December 5, 2025Water2 citationsOpen Access

Modeling the Effect of Nature-Based Solutions in Reducing Soil Erosion with InVEST ® SDR: The Carapelle Case Study

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OAOssama M. M. AbdelwahabGRGiovanni Francesco RicciANAddolorata Maria Netti

Key Points

  • Soil erosion reduced by 72.2% on average with no-tillage compared to baseline levels.
  • Sustainable land management strategies, including different nature-based solutions, were evaluated for effectiveness.
  • Assessment utilized the InVEST Sediment Delivery Ratio model validated against sediment yield data from 2007 and 2008.
  • Findings reveal potential improvements in soil conservation policy to mitigate erosion risks in Mediterranean regions.

Abstract

Soil erosion threatens agricultural sustainability and water quality in Mediterranean watersheds, necessitating effective Nature-Based Solutions (NBSs) for mitigation. This study applied the InVEST Sediment Delivery Ratio (SDR) model to assess erosion patterns and evaluate NBS effectiveness in the Carapelle watershed (506 km2). The SDR model was calibrated and validated using measured sediment yield data from 2007 and 2008. Model validation achieved a 4.3% deviation from observed data after parameter optimization. Four NBS scenarios were evaluated: contour farming (CF), no-tillage (NT), cover crops (CCs), and combined practices (Comb). Baseline soil loss varied from 2.43 t ha−1 yr−1 (2007) to 3.88 t ha−1 yr−1 (2008), with sediment export ranging from 0.86 to 1.30 t ha−1 yr−1. NT demonstrated the highest individual effectiveness, reducing sediment export by 72.2% on average. The Comb approach (NT + CCs) achieved a superior performance with a 75.9% sediment export reduction and a 70.5% soil loss reduction. Spatial analysis revealed that high-retention zones were concentrated in forest and shrubland, while agricultural zones showed the greatest potential for NBS implementation. NBSs significantly enhance sediment retention services in Mediterranean agricultural watersheds. The InVEST SDR model proves to be effective for watershed-scale assessment. The results provide actionable guidance for sustainable land management and soil conservation policy in erosion-prone Mediterranean environments.

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Cite This Study

Abdelwahab et al. (2025) studied this question.

synapsesocial.com/papers/694022492d562116f28fbe28https://doi.org/10.3390/w17243451
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