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  5. Uncovering the role of biophysical factors and socioeconomic forces shaping soil sensitivity to degradation: Insights from italy

Uncovering the role of biophysical factors and socioeconomic forces shaping soil sensitivity to degradation: Insights from italy

Author(s)
Gambella, Filippo
Colantoni, Andrea  
Egidi, Gianluca
Morrow, Nathan
Prokopová, Marcela
more
Date Issued
2021
Type
article
Volume
5
Issue
1
Start Page
1
End Page
14
DOI
10.3390/soilsystems5010011
Journal
SOIL SYSTEMS  
Abstract
Following an operational framework derived from earlier research, our study research estimates the specific contribution of biophysical and socioeconomic factors to soil sensitivity to degradation at two-time points (Early-1990s and Early-2010s) in Italy, a Mediterranean hotspot for desertification risk. A total of 34 variables associated (directly or, at least, indirectly) with different processes of soil degradation (erosion, salinization, sealing, contamination, and compaction) and climate change were considered here, delineating the predominant (underlying) cause (i.e., biophysical or socioeconomic). This set of variables represented the largest (quantitative) information available from national and international data sources including official statistics at both national and European scale. Contribution of biophysical and socioeconomic dimensions to soil sensitivity to degradation was heterogeneous in Italy, with the level of soil sensitivity to biophysical factors being the highest in less accessible, natural areas mostly located in hilly and mountainous districts. The highest level of soil sensitivity to socioeconomic drivers was instead observed in more accessible locations around large cities and flat rural districts with crop intensification and low (but increasing) population density. All these factors delineated an enlarged divide in environmental quality between (i) flat and upland districts, and between (ii) Northern and Southern Italian regions. These findings suggest the appropriateness of policy strategies protecting soils with a strong place-specific knowledge, i.e., based on permanent monitoring of local (biophysical and socioeconomic) conditions.
Handle
http://hdl.handle.net/2067/43361
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