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Sustainability of irrigated agriculture with overexploited aquifers: The case of Segura basin (SE, Spain)

Author

Listed:
  • Rupérez-Moreno, Carmen
  • Senent-Aparicio, Javier
  • Martinez-Vicente, David
  • García-Aróstegui, José Luis
  • Calvo-Rubio, Francisco Cabezas
  • Pérez-Sánchez, Julio

Abstract

The structural water deficit suffered by the Segura basin in southern Spain trend toward unsustainability. The imbalance between the resources and the demand has been caused by the expansion of irrigated areas, the emergence of illegal new irrigated lands and pumping wells, the increase in energy cost and the bad management of water use rights by the public water administration. In addition, climate change and frequent drought in this semi-arid region aggravate the situation. As a consequence, many aquifers are overexploited. The region of Murcia has well-developed agri-food sector, which is a key factor in the regional economy. This sector accounts for 21.4% of the regional GDP, and Murcia also has an important tourism sector, so the overexploitation of the aquifers would concern production, exportation and agricultural development as well as the decline in the water level, environmental damage and water quality impairment. On the other hand, the fulfilment of the “good ecological status” objectives set by the Water Framework Directive, with a deadline of 2027, will be a difficult task for water managers. This study proposed a hydroeconomic model to obtain the cost of the overexploited aquifers in the Segura basin in order to decide on the feasibility of using groundwater for agriculture in situations of overexploitation. The results showed that the price paid by farmers for irrigation water in the year 2027 would be 0.53€/m3 (i.e., annual spending of 180M€), which will involve 10% of the final agricultural crop production in the Region of Murcia. Alternative water sources are proposed to increase water supply security for farmers and to ensure the socio-economic and environmental sustainability of the basin. Finally, the methodology proposed would help to manage water use in other European Mediterranean basins under similar climatic, hydrological and agricultural conditions.

Suggested Citation

  • Rupérez-Moreno, Carmen & Senent-Aparicio, Javier & Martinez-Vicente, David & García-Aróstegui, José Luis & Calvo-Rubio, Francisco Cabezas & Pérez-Sánchez, Julio, 2017. "Sustainability of irrigated agriculture with overexploited aquifers: The case of Segura basin (SE, Spain)," Agricultural Water Management, Elsevier, vol. 182(C), pages 67-76.
  • Handle: RePEc:eee:agiwat:v:182:y:2017:i:c:p:67-76
    DOI: 10.1016/j.agwat.2016.12.008
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    References listed on IDEAS

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    1. Pedrero, Francisco & Kalavrouziotis, Ioannis & Alarcón, Juan José & Koukoulakis, Prodromos & Asano, Takashi, 2010. "Use of treated municipal wastewater in irrigated agriculture--Review of some practices in Spain and Greece," Agricultural Water Management, Elsevier, vol. 97(9), pages 1233-1241, September.
    2. Ward, Frank A. & Pulido-Velázquez, Manuel, 2008. "Efficiency, equity, and sustainability in a water quantity-quality optimization model in the Rio Grande basin," Ecological Economics, Elsevier, vol. 66(1), pages 23-37, May.
    3. Soto-García, M. & Martínez-Alvarez, V. & García-Bastida, P.A. & Alcon, F. & Martin-Gorriz, B., 2013. "Effect of water scarcity and modernisation on the performance of irrigation districts in south-eastern Spain," Agricultural Water Management, Elsevier, vol. 124(C), pages 11-19.
    4. José Molina & José García Aróstegui & José Benavente & Consuelo Varela & Africa Hera & Juan López Geta, 2009. "Aquifers Overexploitation in SE Spain: A Proposal for the Integrated Analysis of Water Management," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 23(13), pages 2737-2760, October.
    5. David Martínez-Granados & José Maestre-Valero & Javier Calatrava & Victoriano Martínez-Alvarez, 2011. "The Economic Impact of Water Evaporation Losses from Water Reservoirs in the Segura Basin, SE Spain," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 25(13), pages 3153-3175, October.
    6. Jose-Luis Molina & Jose García-Aróstegui & John Bromley & Jose Benavente, 2011. "Integrated Assessment of the European WFD Implementation in Extremely Overexploited Aquifers Through Participatory Modelling," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 25(13), pages 3343-3370, October.
    7. Toze, Simon, 2006. "Reuse of effluent water--benefits and risks," Agricultural Water Management, Elsevier, vol. 80(1-3), pages 147-159, February.
    8. repec:iwt:bosers:h039669 is not listed on IDEAS
    9. Bielsa, Jorge & Duarte, Rosa, 2001. "An economic model for water allocation in North Eastern Spain," MPRA Paper 36729, University Library of Munich, Germany.
    10. Shah, Tushaar, 2007. "The groundwater economy of South Asia: an assessment of size, significance and socio-ecological impacts," Book Chapters,, International Water Management Institute.
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    1. Zuluaga-Guerra, Paula Andrea & Martinez-Fernandez, Julia & Esteve-Selma, Miguel Angel & Dell'Angelo, Jampel, 2023. "A socio-ecological model of the Segura River basin, Spain," Ecological Modelling, Elsevier, vol. 478(C).
    2. José A. Aznar-Sánchez & Luis J. Belmonte-Ureña & Juan F. Velasco-Muñoz & Diego L. Valera, 2019. "Aquifer Sustainability and the Use of Desalinated Seawater for Greenhouse Irrigation in the Campo de Níjar, Southeast Spain," IJERPH, MDPI, vol. 16(5), pages 1-16, March.
    3. Zhao, Jie & Zhang, Xuepeng & Yang, Yadong & Zang, Huadong & Yan, Peng & Meki, Manyowa N. & Doro, Luca & Sui, Peng & Jeong, Jaehak & Zeng, Zhaohai, 2021. "Alternative cropping systems for groundwater irrigation sustainability in the North China Plain," Agricultural Water Management, Elsevier, vol. 250(C).
    4. Funk, Bryana & Amer, Saud A. & Ward, Frank A., 2023. "Sustainable aquifer management for food security," Agricultural Water Management, Elsevier, vol. 281(C).
    5. Eekhout, J.P.C. & Delsman, I. & Baartman, J.E.M. & van Eupen, M. & van Haren, C. & Contreras, S. & Martínez-López, J. & de Vente, J., 2024. "How future changes in irrigation water supply and demand affect water security in a Mediterranean catchment," Agricultural Water Management, Elsevier, vol. 297(C).
    6. Ramón García-Marín & Cayetano Espejo-Marín & Rubén Giménez-García & Víctor Ruiz-Álvarez, 2020. "Transformations in the Agricultural and Scenic Landscapes in the Northwest of the Region of Murcia (Spain): Moving towards Long Awaited (Un)Sustainability," Land, MDPI, vol. 9(9), pages 1-24, September.
    7. Vítor João Pereira Domingues Martinho, 2021. "Agri-Food Contexts in Mediterranean Regions: Contributions to Better Resources Management," Sustainability, MDPI, vol. 13(12), pages 1-17, June.

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