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An Integrated Approach for Evaluating Climate Change Risks: A Case Study in Suriname

Author

Listed:
  • Helena Antich-Homar

    (Meteoclim, Parc BIT, Sophie Germain sn, Lleret Bulding, 07121 Palma, Spain)

  • Katharina Hess

    (Climate Protection in Transport, Ministry of Transport Baden-Württemberg, 70173 Stuttgart, Germany)

  • Kepa Solaun

    (School of Sciences, Universidad de Navarra, Campus Universitario, 31080 Pamplona, Spain
    Global Factor, Colón de Larreátegui, 26, Planta 1, 48009 Bilbao, Spain)

  • Gerard Alleng

    (Climate Change Division, Inter-American Development Bank, New York Ave NW 1300, Washington, DC 20577, USA)

  • Adrian Flores

    (Climate Change Division, Inter-American Development Bank, New York Ave NW 1300, Washington, DC 20577, USA)

Abstract

This paper combines long-term state-of-the-art climate projections and indices to provide detailed insights into the future climate of Suriname to facilitate comprehensive information of areas and sectors at high climate risk for political decision-making. The study analyses Suriname’s historical climate (1990–2014) and provides climate projections for three time horizons (2020–2044, 2045–2069, 2070–2094) and two emissions scenarios (intermediate/SSP2-4.5 and severe/SSP5-8.5). Coupled Model Intercomparison Project (CMIP6) modeling is used to analyze changes in sea level, temperature, precipitation, relative humidity, and winds. In addition, risk impact chains were produced for the country’s four most important socio-economic sectors: agriculture and fisheries, forestry, water, and infrastructure. Results show the temperature is expected to increase for all regions and timeframes, reaching warming up to 6 °C in the southern region in the long-term future (2070–2094). Projections point towards a reduction in precipitation in the southwest and coastal regions and a rise in mean sea level. Regarding risk, Paramaribo and Wanica face the highest climate risk. Coronie and Nickerie face the least climate risk. These regions remain the most and least vulnerable in both the SSP2-4.5 and SSP5-8.5 scenarios, but overall values of their risk indices increase substantially over time.

Suggested Citation

  • Helena Antich-Homar & Katharina Hess & Kepa Solaun & Gerard Alleng & Adrian Flores, 2022. "An Integrated Approach for Evaluating Climate Change Risks: A Case Study in Suriname," Sustainability, MDPI, vol. 14(3), pages 1-21, January.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:3:p:1463-:d:735617
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    References listed on IDEAS

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    1. Jan Petzold & Alexandre K. Magnan, 2019. "Climate change: thinking small islands beyond Small Island Developing States (SIDS)," Climatic Change, Springer, vol. 152(1), pages 145-165, January.
    2. Stacy-ann Robinson, 2017. "Climate change adaptation trends in small island developing states," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 22(4), pages 669-691, April.
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