Exploring Soil Conservation Services in Europe’s Urban and Peri-Urban Forests: A Comparative Analysis †
Abstract
1. Introduction
2. Material and Methods
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
UPF | Urban and peri-urban forest |
SC | Soil conservation |
EU | European Union |
EO | Earth observation |
NbS | Nature-based solution |
ES | Ecosystem service |
SDG | Sustainable Development Goal |
FUA | Functional urban area |
EEA | European Environmental Agency |
OECD | Organisation for Economic Co-operation and Development |
RULSE | Revised Universal Soil Loss Equation |
ESDAC | European Soil Data Center |
CLMS | Copernicus Land Monitoring Service |
LAEA | Lambert Azimuthal Equal Area |
References
- United Nations. Department of Economic and Social Affairs, & Population Division, 2019. World urbanization prospects: The 2018 Revision. New York, NY, USA, 799. Available online: https://population.un.org/wup/assets/WUP2018-Report.pdf (accessed on 15 January 2024).
- García-Nieto, A.P.; Geijzendorffer, I.R.; Baró, F.; Roche, P.K.; Bonneau, A.; Cramer, W. Impacts of urbanization around Mediterranean cities: Changes in ecosystem service supply. Ecol. Indic. 2018, 91, 589–606. [Google Scholar] [CrossRef]
- Dobbs, C.; Eleuterio, A.A.; Amaya, J.D.; Montoya, J.; Kendal, D. The benefits of urban and peri-urban forestry. Unasylva 2018, 69, 22–29. Available online: https://nespurban.edu.au/wp-content/uploads/2019/01/Dobbsetal2018_Unasylva_FORESTSANDSUSTAINABLECITIES.pdf (accessed on 15 January 2024).
- Livesley, S.J.; Escobedo, F.J.; Morgenroth, J. The biodiversity of urban and peri-urban forests and the diverse ecosystem services they provide as socio-ecological systems. Forests 2016, 7, 291. [Google Scholar] [CrossRef]
- Endreny, T.A. Strategically growing the urban forest will improve our world. Nat. Commun. 2018, 9, 1160. [Google Scholar] [CrossRef] [PubMed]
- Kolimenakis, A.; Solomou, A.D.; Proutsos, N.; Avramidou, E.V.; Korakaki, E.; Karetsos, G.; Kontogianni, A.B.; Kontos, K.; Georgiadis, C.; Maroulis, G.; et al. Public perceptions of the socioeconomic importance of urban green areas in the era of COVID-19: A case study of a nationwide survey in Greece. Land 2022, 11, 2290. [Google Scholar] [CrossRef]
- Panagos, P.; Borrelli, P.; Poesen, J.; Ballabio, C.; Lugato, E.; Meusburger, K.; Montanarella, L.; Alewell, C. The new assessment of soil loss by water erosion in Europe. Environ. Sci. Policy 2015, 54, 438–447. [Google Scholar] [CrossRef]
- An, Y.; Zhao, W.; Li, C.; Ferreira, C.S.S. Temporal changes on soil conservation services in large basins across the world. Catena 2022, 209, 105793. [Google Scholar] [CrossRef]
- Dijkstra, L.; Poelman, H.; Veneri, P. The EU-OECD Definition of a Functional Urban Area. 2019. Available online: https://www.oecd-ilibrary.org/urban-rural-and-regional-development/the-eu-oecd-definition-of-a-functional-urban-area_d58cb34d-en (accessed on 15 January 2024).
- Bezak, N.; Ballabio, C.; Mikoš, M.; Petan, S.; Borrelli, P.; Panagos, P. Reconstruction of past rainfall erosivity and trend detection based on the REDES database and reanalysis rainfall. J. Hydrol. 2020, 590, 125372. [Google Scholar] [CrossRef]
- Panagos, P.; Meusburger, K.; Alewell, C.; Montanarella, L. Soil erodibility estimation using LUCAS point survey data of Europe. Environ. Model. Softw. 2012, 30, 143–145. [Google Scholar] [CrossRef]
- Panagos, P.; Borrelli, P.; Meusburger, K. A new European slope length and steepness factor (LS-Factor) for modeling soil erosion by water. Geosciences 2015, 5, 117–126. [Google Scholar] [CrossRef]
- Panagos, P.; Borrelli, P.; Meusburger, K.; Alewell, C.; Lugato, E.; Montanarella, L. Estimating the soil erosion cover-management factor at the European scale. Land Use Policy 2015, 48, 38–50. [Google Scholar] [CrossRef]
- Panagos, P.; Borrelli, P.; Meusburger, K.; Van Der Zanden, E.H.; Poesen, J.; Alewell, C. Modelling the effect of support practices (P-factor) on the reduction of soil erosion by water at European scale. Environ. Sci. Policy 2015, 51, 23–34. [Google Scholar] [CrossRef]
- Stefanidis, S.; Mallinis, G.; Alexandridis, V. Multi-Decadal Monitoring of Soil Erosion Rates in South Europe. Environ. Sci. Proc. 2023, 26, 138. [Google Scholar] [CrossRef]
- Renard, K.G.; Foster, G.R.; Weesies, G.A.; Porter, J.P. RUSLE: Revised universal soil loss equation. J. Soil Water Conserv. 1991, 46, 30–33. [Google Scholar] [CrossRef]
- Verheijen, F.G.; Jones, R.J.; Rickson, R.J.; Smith, C.J. Tolerable versus actual soil erosion rates in Europe. Earth-Sci. Rev. 2009, 94, 23–38. [Google Scholar] [CrossRef]
Dataset | Data Source | Data Accessibility | Spatial Resolution | Format | References |
---|---|---|---|---|---|
Soil erodibility (K-factor) | ESDAC | https://esdac.jrc.ec.europa.eu/content/soil-erodibility-k-factor-high-resolution-dataset-europe, accessed on 20 January 2024 | 500 m | raster | [11] |
Slope Length and Steepness (LS-factor) | ESDAC | https://esdac.jrc.ec.europa.eu/content/ls-factor-slope-length-and-steepness-factor-eu, accessed on 20 January 2024 | 25 m | raster | [12] |
Support Practices (P-factor) | ESDAC | https://esdac.jrc.ec.europa.eu/content/support-practices-factor-p-factor-eu, accessed on 20 January 2024 | 1 km | raster | [14] |
Rainfall erosivity (R-factor) | ESDAC | https://esdac.jrc.ec.europa.eu/content/rainfall-erosivity-european-union-and-switzerland, accessed on 20 January 2024 | 1 km | raster | [10] |
Cover Management (C-factor) | CLMS | https://land.copernicus.eu/pan-european/corine-land-cover, accessed on 20 January 2024 | - | vector | [16] |
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Stefanidis, S.P.; Proutsos, N.D.; Mallinis, G. Exploring Soil Conservation Services in Europe’s Urban and Peri-Urban Forests: A Comparative Analysis. Proceedings 2025, 117, 29. https://doi.org/10.3390/proceedings2025117029
Stefanidis SP, Proutsos ND, Mallinis G. Exploring Soil Conservation Services in Europe’s Urban and Peri-Urban Forests: A Comparative Analysis. Proceedings. 2025; 117(1):29. https://doi.org/10.3390/proceedings2025117029
Chicago/Turabian StyleStefanidis, Stefanos P., Nikolaos D. Proutsos, and Giorgos Mallinis. 2025. "Exploring Soil Conservation Services in Europe’s Urban and Peri-Urban Forests: A Comparative Analysis" Proceedings 117, no. 1: 29. https://doi.org/10.3390/proceedings2025117029
APA StyleStefanidis, S. P., Proutsos, N. D., & Mallinis, G. (2025). Exploring Soil Conservation Services in Europe’s Urban and Peri-Urban Forests: A Comparative Analysis. Proceedings, 117(1), 29. https://doi.org/10.3390/proceedings2025117029