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Mapping Ecosystem Services in an Andean Water Supply Basin

Author

Listed:
  • Diana Marcela Ruíz Ordoñez

    (Grupo de Estudios Ambientales (GEA), Environmental Sciencies, Department of Biology, University of Cauca, Calle 5 #4-70, Popayán 190003, Colombia
    These authors contributed equally to this work.)

  • Yineth Viviana Camacho De Angulo

    (Grupo de Estudios Ambientales (GEA), Environmental Sciencies, Department of Biology, University of Cauca, Calle 5 #4-70, Popayán 190003, Colombia
    These authors contributed equally to this work.)

  • Edgar Leonairo Pencué Fierro

    (Optics and Laser Group, Environmental Sciences, Department of Physics, University of Cauca, Calle 5 #4-70, Popayán 190003, Colombia)

  • Apolinar Figueroa Casas

    (Grupo de Estudios Ambientales (GEA), Environmental Sciencies, Department of Biology, University of Cauca, Calle 5 #4-70, Popayán 190003, Colombia)

Abstract

Socio-ecological dynamics affect the ecosystem services supply and are relevant to generate effective water management strategies; this condition is considered to evaluate under a holistic approach, the water ecosystem services (WES) in an Andean supply basin (ASB) in Colombia. This analysis focus on the connection of biophysical and sociocultural components for the multi-purpose use of water based on The Soil and Water Assessment Tool (SWAT) modelling for Las Piedras River Basin (LPRB). The generated Hydrological Response Units (HRUs), allows to estimate the capacity of the basin for supplying water (quantity) in adequate conditions (quality) for local populations in rural and urban areas, as well as WES zoning. The model was calibrated and validated to generate a baseline scenario, which was complemented with social cartography and participative workshops. The results indicate a low concentration of nitrogen and phosphorus, boosted by specific agro-ecological strategies developed by local communities; however, there are health risks for populations downstream and those that are supplied with water directly from the source. Additionally, Land Use and Land Cover (LULC) affects water availability, which demands restoration and conservation strategies to maintain WES supply for socioeconomic and cultural purposes, since different views on the available WES converge in the basin.

Suggested Citation

  • Diana Marcela Ruíz Ordoñez & Yineth Viviana Camacho De Angulo & Edgar Leonairo Pencué Fierro & Apolinar Figueroa Casas, 2023. "Mapping Ecosystem Services in an Andean Water Supply Basin," Sustainability, MDPI, vol. 15(3), pages 1-15, January.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:3:p:1793-:d:1038921
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    References listed on IDEAS

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    1. Christian Mera-Parra & Fernando Oñate-Valdivieso & Priscilla Massa-Sánchez & Pablo Ochoa-Cueva, 2021. "Establishment of the Baseline for the IWRM in the Ecuadorian Andean Basins: Land Use Change, Water Recharge, Meteorological Forecast and Hydrological Modeling," Land, MDPI, vol. 10(5), pages 1-18, May.
    2. Berrouet, Lina & Villegas-Palacio, Clara & Botero, Verónica, 2020. "Vulnerability of Rural Communities to Change in an Ecosystem Service Provision: Surface water supply. A Case Study in the Northern Andes, Colombia," Land Use Policy, Elsevier, vol. 97(C).
    3. Bennett, Drew E. & Gosnell, Hannah, 2015. "Integrating multiple perspectives on payments for ecosystem services through a social–ecological systems framework," Ecological Economics, Elsevier, vol. 116(C), pages 172-181.
    4. Uribe, Natalia & Corzo, Gerald & Quintero, Marcela & van Griensven, Ann & Solomatine, Dimitri, 2018. "Impact of conservation tillage on nitrogen and phosphorus runoff losses in a potato crop system in Fuquene watershed, Colombia," Agricultural Water Management, Elsevier, vol. 209(C), pages 62-72.
    5. Yuddy Alejandra Castro Ortegón & Julio César Acosta-Prado & Pedro Mauricio Acosta Castellanos, 2022. "Impact of Land Cover Changes on the Availability of Water Resources in the Regional Natural Park Serranía de Las Quinchas," Sustainability, MDPI, vol. 14(6), pages 1-20, March.
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    Cited by:

    1. Kelly Andrea Aguirre & Diego Paredes Cuervo, 2023. "Water Safety and Water Governance: A Scientometric Review," Sustainability, MDPI, vol. 15(9), pages 1-16, April.

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