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Impacts of Erosion on the Sustainability of Organic Olive Groves: A Case Study (Estepa Region, Southwestern Spain)

Author

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  • Antonio Alberto Rodríguez Sousa

    (Biodiversity and Conservation Area, Department of Biology and Geology, Physics and Inorganic Chemistry, School of Experimental Sciences and Technology (ESCET), University Rey Juan Carlos (URJC), 28933 Madrid, Spain
    Department of Biodiversity, Ecology and Evolution (BEE), Faculty of Biological Sciences, University Complutense of Madrid (UCM), 28040 Madrid, Spain)

  • Carlos Parra-López

    (Department of Agrifood System Economics, Institute of Agricultural and Fisheries Research and Training (IFAPA), Ministry of Agriculture, Livestock, Fisheries and Sustainable Development—Government of Andalusia, P.O. Box 2027, 18080 Granada, Spain)

  • Samir Sayadi-Gmada

    (Department of Agrifood System Economics, Institute of Agricultural and Fisheries Research and Training (IFAPA), Ministry of Agriculture, Livestock, Fisheries and Sustainable Development—Government of Andalusia, P.O. Box 2027, 18080 Granada, Spain)

  • Jesús M. Barandica

    (Department of Biodiversity, Ecology and Evolution (BEE), Faculty of Biological Sciences, University Complutense of Madrid (UCM), 28040 Madrid, Spain)

  • Alejandro J. Rescia

    (Department of Biodiversity, Ecology and Evolution (BEE), Faculty of Biological Sciences, University Complutense of Madrid (UCM), 28040 Madrid, Spain)

Abstract

Spain has more than 2.5 M ha of olive groves, with 60% of this area (i.e., 1.5 M ha) concentrated in the region of Andalusia (Southern Spain). Assuming the socio-ecological characteristics of these crops, of which their contribution to ecosystemic services (ES) is fundamental for society, it is highly relevant to direct their management towards practices that guarantee their durability. Organic management of olive groves constitutes a multifunctional model that contributes to ensuring its sustainability and represents 2.4–3.5% of the olive grove area in Spain. Taking the Protected Designation of Origin (PDO) Estepa (Southwestern Spain) as a study model, where organic olive groves are novel, a study of the impacts of erosion on the economic, social, and environmental factors associated with this management was carried out in addition to estimating its impacts. The results showed how organic management promotes edaphic fertility, keeping the levels of diffuse pollution under the legislative limits. Although the increase in erosion has negative effects on the sustainability/durability of agricultural holdings, organic management consolidates a sustainable model that satisfies farmers’ demands. Therefore, organic farming is a model that focuses on the correct use of natural resources associated with the geographical region of study, and contributes to increasing the sustainability of olive groves.

Suggested Citation

  • Antonio Alberto Rodríguez Sousa & Carlos Parra-López & Samir Sayadi-Gmada & Jesús M. Barandica & Alejandro J. Rescia, 2021. "Impacts of Erosion on the Sustainability of Organic Olive Groves: A Case Study (Estepa Region, Southwestern Spain)," Sustainability, MDPI, vol. 13(14), pages 1-20, July.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:14:p:7983-:d:595940
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    1. Graeme D. Ruxton, 2006. "The unequal variance t-test is an underused alternative to Student's t-test and the Mann--Whitney U test," Behavioral Ecology, International Society for Behavioral Ecology, vol. 17(4), pages 688-690, July.
    2. Rodríguez-Entrena, Macario & Espinosa-Goded, María & Barreiro-Hurlé, Jesús, 2014. "The role of ancillary benefits on the value of agricultural soils carbon sequestration programmes: Evidence from a latent class approach to Andalusian olive groves," Ecological Economics, Elsevier, vol. 99(C), pages 63-73.
    3. Parra-Lopez, Carlos & Calatrava-Requena, Javier & de-Haro-Gimenez, Tomas, 2008. "A systemic comparative assessment of the multifunctional performance of alternative olive systems in Spain within an AHP-extended framework," Ecological Economics, Elsevier, vol. 64(4), pages 820-834, February.
    4. Daniel El Chami, 2020. "Towards Sustainable Organic Farming Systems," Sustainability, MDPI, vol. 12(23), pages 1-5, November.
    5. Rodríguez Sousa, A.A. & Parra-López, C. & Sayadi-Gmada, S. & Barandica, J.M. & Rescia, A.J., 2020. "A multifunctional assessment of integrated and ecological farming in olive agroecosystems in southwestern Spain using the Analytic Hierarchy Process," Ecological Economics, Elsevier, vol. 173(C).
    6. Okan Fistikoglu & Nilgun Harmancioglu, 2002. "Integration of GIS with USLE in Assessment of Soil Erosion," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 16(6), pages 447-467, December.
    7. Yannick Buitenhuis & Jeroen Candel & Peter H. Feindt & Katrien Termeer & Erik Mathijs & Isabel Bardají & Jasmine Black & Anna Martikainen & Mertijn Moeyersons & Alessandro Sorrentino, 2020. "Improving the Resilience‐enabling Capacity of the Common Agricultural Policy: Policy Recommendations for More Resilient EU Farming Systems," EuroChoices, The Agricultural Economics Society, vol. 19(2), pages 63-71, August.
    8. Torres-Miralles, M. & Grammatikopoulou, I. & Rescia, A.J., 2017. "Employing contingent and inferred valuation methods to evaluate the conservation of olive groves and associated ecosystem services in Andalusia (Spain)," Ecosystem Services, Elsevier, vol. 26(PA), pages 258-269.
    9. Massimo Tavoni & Elmar Kriegler & Keywan Riahi & Detlef P. van Vuuren & Tino Aboumahboub & Alex Bowen & Katherine Calvin & Emanuele Campiglio & Tom Kober & Jessica Jewell & Gunnar Luderer & Giacomo Ma, 2015. "Post-2020 climate agreements in the major economies assessed in the light of global models," Nature Climate Change, Nature, vol. 5(2), pages 119-126, February.
    10. Ana D. Maldonado & Darío Ramos-López & Pedro A. Aguilera, 2019. "The Role of Cultural Landscapes in the Delivery of Provisioning Ecosystem Services in Protected Areas," Sustainability, MDPI, vol. 11(9), pages 1-18, April.
    11. Maria G. Lampridi & Claus G. Sørensen & Dionysis Bochtis, 2019. "Agricultural Sustainability: A Review of Concepts and Methods," Sustainability, MDPI, vol. 11(18), pages 1-27, September.
    12. Elena Tamburini & Paola Pedrini & Maria Gabriella Marchetti & Elisa Anna Fano & Giuseppe Castaldelli, 2015. "Life Cycle Based Evaluation of Environmental and Economic Impacts of Agricultural Productions in the Mediterranean Area," Sustainability, MDPI, vol. 7(3), pages 1-21, March.
    13. George Pavlidis & Vassilios A. Tsihrintzis, 2018. "Environmental Benefits and Control of Pollution to Surface Water and Groundwater by Agroforestry Systems: a Review," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 32(1), pages 1-29, January.
    14. Marta Guth & Katarzyna Smędzik-Ambroży & Bazyli Czyżewski & Sebastian Stępień, 2020. "The Economic Sustainability of Farms under Common Agricultural Policy in the European Union Countries," Agriculture, MDPI, vol. 10(2), pages 1-20, January.
    15. Antonio López-Pintor & Javier Sanz-Cañada & Ernesto Salas & Alejandro J. Rescia, 2018. "Assessment of Agri-Environmental Externalities in Spanish Socio-Ecological Landscapes of Olive Groves," Sustainability, MDPI, vol. 10(8), pages 1-25, July.
    16. Antonio Alberto Rodríguez Sousa & Carlos Parra-López & Samir Sayadi-Gmada & Jesús M. Barandica & Alejandro J. Rescia, 2020. "Evaluation of the Objectives and Concerns of Farmers to Apply Different Agricultural Managements in Olive Groves: The Case of Estepa Region (Southern, Spain)," Land, MDPI, vol. 9(10), pages 1-21, October.
    17. Antonio Alberto Rodríguez Sousa & Jesús M. Barandica & Alejandro Rescia, 2019. "Ecological and Economic Sustainability in Olive Groves with Different Irrigation Management and Levels of Erosion: A Case Study," Sustainability, MDPI, vol. 11(17), pages 1-20, August.
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