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Integrating Land Cover Change Analysis and Innovative Monitoring for Soil Degradation Assessment in Areas Under High Anthropogenic Pressure

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  • Mariagrazia D’Emilio

    (Institute of Methodologies for Environmental Analysis, Italian National Research Council IMAA CNR, UDR Napoli, Corso Nicolangelo Protopisani IT, I-80146 Naplesi, Italy)

  • Rosa Coluzzi

    (Institute of Methodologies for Environmental Analysis, Italian National Research Council IMAA CNR, Contrada Santa Loja, I-85050 Tito, Italy
    National Biodiversity Future Center (NBFC), I-90133 Palermo, Italy)

  • Andrea Falcone

    (Independent Researcher, I-85100 Potenza, Italy)

  • Vito Imbrenda

    (Institute of Methodologies for Environmental Analysis, Italian National Research Council IMAA CNR, Contrada Santa Loja, I-85050 Tito, Italy
    National Biodiversity Future Center (NBFC), I-90133 Palermo, Italy)

  • Filomena Loffredo

    (Advanced Biomedical Science Department, University of Naples Federico II, I-80128 Naples, Italy
    Laboratory of Radioactivity (Lab. RAD), Center for Advanced Metrological and Technological Services (CeSMA), University of Naples Federico II, I-80146 Naples, Italy)

  • Antonio Loperte

    (Institute of Methodologies for Environmental Analysis, Italian National Research Council IMAA CNR, Contrada Santa Loja, I-85050 Tito, Italy)

  • Maria Quarto

    (Advanced Biomedical Science Department, University of Naples Federico II, I-80128 Naples, Italy
    Laboratory of Radioactivity (Lab. RAD), Center for Advanced Metrological and Technological Services (CeSMA), University of Naples Federico II, I-80146 Naples, Italy
    National Institute for Nuclear Physics (INFN)–Section of Naples, I-80126 Naples, Italy)

  • Maria Ragosta

    (Department of Health Sciences, University of Basilicata, Viale dell’ Ateneo Lucano 10, I-85100 Potenza, Italy)

Abstract

Soil monitoring is increasingly important for environmental sustainability and biodiversity protection, as urbanization and industrial development expose fertile land to pollution risks. Soil quality can be assessed through physical–chemical parameters and by analyzing land use evolution, highlighting the need for integrated procedures that jointly address land use transitions and soil health. This study assesses temporal soil changes (2004–2019) in an area affected by impactful industrial activities (Tito Scalo, Southern Italy), alongside major land use transformations. We explore the potential of a procedure based on a combination of standard techniques: analysis of land use/cover changes, magnetic susceptibility measurements from two field surveys (2004 and 2019) as a proxy for heavy metal concentrations, and 226 Ra soil concentration measurements, proving to be a decisive factor in better interpreting the evolution of magnetic susceptibility values. Results show that, despite increased industrial activities and expanded sealed areas, magnetic susceptibility values decrease in the second survey. This suggests that policy measures, including temporary suspension of certain industrial activities and remediation efforts, positively influenced environmental quality. The proposed procedure is low-cost, time-efficient, and independent of local geological, bioclimatic, or socio-economic conditions, making it suitable for monitoring areas under high anthropogenic pressure and for evaluating the effectiveness of remediation and recovery strategies supporting mitigation or remediation actions and enabling functional redevelopment of remediated sites.

Suggested Citation

  • Mariagrazia D’Emilio & Rosa Coluzzi & Andrea Falcone & Vito Imbrenda & Filomena Loffredo & Antonio Loperte & Maria Quarto & Maria Ragosta, 2026. "Integrating Land Cover Change Analysis and Innovative Monitoring for Soil Degradation Assessment in Areas Under High Anthropogenic Pressure," Sustainability, MDPI, vol. 18(4), pages 1-19, February.
  • Handle: RePEc:gam:jsusta:v:18:y:2026:i:4:p:1789-:d:1861175
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