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Enhancing production and flow of freshwater ecosystem services in a managed Himalayan river system under uncertain future climate

Author

Listed:
  • Andrea Momblanch

    (Cranfield University)

  • Lindsay Beevers

    (Heriot-Watt University)

  • Pradeep Srinivasalu

    (Divecha Centre for Climate Change)

  • Anil Kulkarni

    (Divecha Centre for Climate Change)

  • Ian P. Holman

    (Cranfield University)

Abstract

Future climate change will likely impact the multiple freshwater ecosystem services (fES) provided by catchments through their landscapes and river systems. However, there is high spatio-temporal uncertainty on those impacts linked to climate change uncertainty and the natural and anthropogenic interdependencies of water management systems. This study identifies current and future spatial patterns of fES production in a highly managed water resource system in northern India to inform the design and assessment of plausible adaptation measures to enhance fES production in the catchment under uncertain climate change. A water resource systems modelling approach is used to evaluate fES across the full range of plausible future scenarios, to identify the (worst-case) climate change scenarios triggering the greatest impacts and assess the capacity of adaptation to enhance fES. Results indicate that the current and future states of the fES depend on the spatial patterns of climate change and the impacts of infrastructure management on river flows. Natural zones deliver more regulating and cultural services than anthropized areas, although they are more climate-sensitive. The implementation of a plausible adaptation strategy only manages to slightly enhance fES in the system with respect to no adaptation. These results demonstrate that water resource systems models are powerful tools to capture complex system dependencies and inform the design of robust catchment management measures. They also highlight that mitigation and more ambitious adaptation strategies are needed to offset climate change impacts in highly climate-sensitive catchments.

Suggested Citation

  • Andrea Momblanch & Lindsay Beevers & Pradeep Srinivasalu & Anil Kulkarni & Ian P. Holman, 2020. "Enhancing production and flow of freshwater ecosystem services in a managed Himalayan river system under uncertain future climate," Climatic Change, Springer, vol. 162(2), pages 343-361, September.
  • Handle: RePEc:spr:climat:v:162:y:2020:i:2:d:10.1007_s10584-020-02795-2
    DOI: 10.1007/s10584-020-02795-2
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    1. Langemeyer, Johannes & Gómez-Baggethun, Erik & Haase, Dagmar & Scheuer, Sebastian & Elmqvist, Thomas, 2016. "Bridging the gap between ecosystem service assessments and land-use planning through Multi-Criteria Decision Analysis (MCDA)," Environmental Science & Policy, Elsevier, vol. 62(C), pages 45-56.
    2. Irvine, Katherine N. & O’Brien, Liz & Ravenscroft, Neil & Cooper, Nigel & Everard, Mark & Fazey, Ioan & Reed, Mark S. & Kenter, Jasper O., 2016. "Ecosystem services and the idea of shared values," Ecosystem Services, Elsevier, vol. 21(PB), pages 184-193.
    3. Ashagre, Biniam B. & Platts, Philip J. & Njana, Marco & Burgess, Neil D. & Balmford, Andrew & Turner, R. Kerry & Schaafsma, Marije, 2018. "Integrated modelling for economic valuation of the role of forests and woodlands in drinking water provision to two African cities," Ecosystem Services, Elsevier, vol. 32(PA), pages 50-61.
    4. Underwood, Emma C. & Hollander, Allan D. & Safford, Hugh D. & Kim, John B. & Srivastava, Lorie & Drapek, Ray J., 2019. "The impacts of climate change on ecosystem services in southern California," Ecosystem Services, Elsevier, vol. 39(C).
    5. Nigel Arnell & Ben Lloyd-Hughes, 2014. "The global-scale impacts of climate change on water resources and flooding under new climate and socio-economic scenarios," Climatic Change, Springer, vol. 122(1), pages 127-140, January.
    6. Katy Roelich & Jannik Giesekam, 2019. "Decision making under uncertainty in climate change mitigation: introducing multiple actor motivations, agency and influence," Climate Policy, Taylor & Francis Journals, vol. 19(2), pages 175-188, February.
    7. Paula A. Harrison & Robert W. Dunford & Ian P. Holman & Mark D. A. Rounsevell, 2016. "Climate change impact modelling needs to include cross-sectoral interactions," Nature Climate Change, Nature, vol. 6(9), pages 885-890, September.
    8. Britta Höllermann & Simone Giertz & Bernd Diekkrüger, 2010. "Benin 2025—Balancing Future Water Availability and Demand Using the WEAP ‘Water Evaluation and Planning’ System," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 24(13), pages 3591-3613, October.
    9. Balzan, Mario V & Caruana, Julio & Zammit, Annrica, 2018. "Assessing the capacity and flow of ecosystem services in multifunctional landscapes: Evidence of a rural-urban gradient in a Mediterranean small island state," Land Use Policy, Elsevier, vol. 75(C), pages 711-725.
    10. Kamal Vatta & R. S. Sidhu & Upmanu Lall & P. S. Birthal & Garima Taneja & Baljinder Kaur & Naresh Devineni & Charlotte MacAlister, 2018. "Assessing the economic impact of a low-cost water-saving irrigation technology in Indian Punjab: the tensiometer," Water International, Taylor & Francis Journals, vol. 43(2), pages 305-321, February.
    11. J. Tzilivakis & D. J. Warner & A. Green & K. A. Lewis, 2019. "Spatial analysis of the benefits and burdens of ecological focus areas for water-related ecosystem services vulnerable to climate change in Europe," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 24(2), pages 205-233, February.
    12. Schröter, Matthias & Koellner, Thomas & Alkemade, Rob & Arnhold, Sebastian & Bagstad, Kenneth J. & Erb, Karl-Heinz & Frank, Karin & Kastner, Thomas & Kissinger, Meidad & Liu, Jianguo & López-Hoffman, , 2018. "Interregional flows of ecosystem services: Concepts, typology and four cases," Ecosystem Services, Elsevier, vol. 31(PB), pages 231-241.
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