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Costs-benefit Analysis for the use of Shallow Groundwater as non-conventional Water Resource

Author

Listed:
  • Mariana Marchioni

    (DICA, Politecnico di Milano)

  • Anita Raimondi

    (DICA, Politecnico di Milano)

  • Maria Gloria Chiano

    (DICA, Politecnico di Milano)

  • Umberto Sanfilippo

    (DICA, Politecnico di Milano)

  • Stefano Mambretti

    (DICA, Politecnico di Milano)

  • Gianfranco Becciu

    (DICA, Politecnico di Milano)

Abstract

Encouraging the implementation of non-conventional water resources (NCWR) is a fundamental strategy to face the future challenges due to urban population growth and resource scarcity. The implementation of a systematic process of Cost Benefit Analysis (CBA) offers reliable economic indicators to support decision makers in taking actions shifting towards NCWR. While infrastructure costs are directly estimated, while the benefits depend upon the considered stakeholders and require a tough estimation of the achieved ecosystem services. This research provides a framework for CBA analysis adopting NCWR at municipal level. The framework has been then applied to two case studies in Milan focused on the exploitation of shallow groundwater, where the obtained economic indicators has stressed out the importance of considering a complete benefits analysis that could support incentive policies on shifting part of the financial benefits to direct users leading to benefits for the whole community.

Suggested Citation

  • Mariana Marchioni & Anita Raimondi & Maria Gloria Chiano & Umberto Sanfilippo & Stefano Mambretti & Gianfranco Becciu, 2023. "Costs-benefit Analysis for the use of Shallow Groundwater as non-conventional Water Resource," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 37(5), pages 2125-2142, March.
  • Handle: RePEc:spr:waterr:v:37:y:2023:i:5:d:10.1007_s11269-023-03483-3
    DOI: 10.1007/s11269-023-03483-3
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    1. Cecilia Tortajada, 2021. "Water reuse to address water security," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 37(4), pages 581-583, July.
    2. Joseph A. Cotruvo, 2016. "Potable water reuse history and a new framework for decision making," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 32(4), pages 503-513, July.
    3. Chenoweth, Jonathan & Anderson, Andrew R. & Kumar, Prashant & Hunt, W.F. & Chimbwandira, Sarah Jane & Moore, Trisha L.C., 2018. "The interrelationship of green infrastructure and natural capital," Land Use Policy, Elsevier, vol. 75(C), pages 137-144.
    4. Yi-Tui Chen & Chung-Chiang Chen, 2014. "The Optimal Reuse of Reclaimed Water: A Mathematical Model Analysis," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(7), pages 2035-2048, May.
    5. Mark Redwood & Moez Bouraoui & Boubaker Houmane, 2014. "Rainwater and greywater harvesting for urban food security in La Soukra, Tunisia," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 30(2), pages 293-307, June.
    6. Anna Hurlimann & Sara Dolnicar, 2016. "Public acceptance and perceptions of alternative water sources: a comparative study in nine locations," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 32(4), pages 650-673, July.
    7. Qadir, M. & Sharma, B.R. & Bruggeman, A. & Choukr-Allah, R. & Karajeh, F., 2007. "Non-conventional water resources and opportunities for water augmentation to achieve food security in water scarce countries," Agricultural Water Management, Elsevier, vol. 87(1), pages 2-22, January.
    8. M. Molinos-Senante & F. Hernandez-Sancho & R. Sala-Garrido, 2013. "Tariffs and Cost Recovery in Water Reuse," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 27(6), pages 1797-1808, April.
    9. Sandra Ricart & Rubén A. Villar-Navascués & Maria Hernández-Hernández & Antonio M. Rico-Amorós & Jorge Olcina-Cantos & Enrique Moltó-Mantero, 2021. "Extending Natural Limits to Address Water Scarcity? The Role of Non-Conventional Water Fluxes in Climate Change Adaptation Capacity: A Review," Sustainability, MDPI, vol. 13(5), pages 1-31, February.
    10. Kelly S. Fielding & Sara Dolnicar & Tracy Schultz, 2019. "Public acceptance of recycled water," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 35(4), pages 551-586, July.
    11. Ekins, Paul, 2003. "Identifying critical natural capital: Conclusions about critical natural capital," Ecological Economics, Elsevier, vol. 44(2-3), pages 277-292, March.
    12. Costanza, Robert, 2020. "Valuing natural capital and ecosystem services toward the goals of efficiency, fairness, and sustainability," Ecosystem Services, Elsevier, vol. 43(C).
    13. Francisco Alcon & Julia Martin-Ortega & Francisco Pedrero & Juan Alarcon & M. Miguel, 2013. "Incorporating Non-market Benefits of Reclaimed Water into Cost-Benefit Analysis: A Case Study of Irrigated Mandarin Crops in southern Spain," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 27(6), pages 1809-1820, April.
    14. Hyun Woo Kim & Ming-Han Li & Hyun Kim & Hye Kyung Lee, 2016. "Cost-benefit analysis and equitable cost allocation for a residential rainwater harvesting system in the city of Austin, Texas," International Journal of Water Resources Development, Taylor & Francis Journals, vol. 32(5), pages 749-764, September.
    15. C. Matos & I. Bentes & C. Santos & M. Imteaz & S. Pereira, 2015. "Economic Analysis of a Rainwater Harvesting System in a Commercial Building," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 29(11), pages 3971-3986, September.
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