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Forecasting ecosystem services to guide coastal wetland rehabilitation decisions

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  • Calder, Ryan S.D.
  • Shi, Congjie
  • Mason, Sara A.
  • Olander, Lydia P.
  • Borsuk, Mark E.

Abstract

Coastal wetlands provide diverse ecosystem services such as flood protection and recreational value. However, predicting changes in ecosystem service value from restoration or management is challenging because environmental systems are highly complex and uncertain. Furthermore, benefits are diverse and accrue over various timescales. We developed a generalizable mathematical coastal management model to compare restoration expenditures to ecosystem service benefits and apply it to McInnis Marsh, Marin County, California, USA. We find that benefits of restoration outweigh costs for a wide range of assumptions. For instance, costs of restoration range from 8–30% of the increase in ecosystem service value over 50 years depending on discount rate. Flood protection is the dominant monetized service for most payback periods and discount rates, but other services (e.g., recreation) dominate on shorter timescales (>50% of total value for payback periods ≤4 years). We find that the range of total ecosystem service value is narrower than overall variability reported in the literature, supporting the use of mechanistic methods in decision-making around coastal resiliency. However, the magnitude and relative importance of ecosystem services are sensitive to payback period, discount rate and risk tolerance, demonstrating the importance of probabilistic decision analysis. This work provides a modular, transferrable tool to that can also inform coastal resiliency investments elsewhere.

Suggested Citation

  • Calder, Ryan S.D. & Shi, Congjie & Mason, Sara A. & Olander, Lydia P. & Borsuk, Mark E., 2019. "Forecasting ecosystem services to guide coastal wetland rehabilitation decisions," Ecosystem Services, Elsevier, vol. 39(C).
  • Handle: RePEc:eee:ecoser:v:39:y:2019:i:c:s2212041618306697
    DOI: 10.1016/j.ecoser.2019.101007
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    References listed on IDEAS

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    1. Boyd, James & Ringold, Paul & Krupnick, Alan & Johnston, Robert J. & Weber, Matthew A. & Hall, Kim, 2016. "Ecosystem Services Indicators: Improving the Linkage between Biophysical and Economic Analyses," International Review of Environmental and Resource Economics, now publishers, vol. 8(3-4), pages 359-443, June.
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    Cited by:

    1. Liang Lv & Shihao Zhang & Jie Zhu & Ziming Wang & Zhe Wang & Guoqing Li & Chen Yang, 2022. "Ecological Restoration Strategies for Mountainous Cities Based on Ecological Security Patterns and Circuit Theory: A Case of Central Urban Areas in Chongqing, China," IJERPH, MDPI, vol. 19(24), pages 1-21, December.
    2. Yu, Shuling & Cui, Baoshan & Xie, Chengjie & Ma, Xu & Man, Ying & Yan, Jiaguo & Fu, Jing, 2021. "A quantitative approach for offsetting the coastal reclamation impacts on multiple ecosystem services in the Yellow River Delta," Ecosystem Services, Elsevier, vol. 52(C).
    3. Tianlin Zhai & Jing Wang & Ying Fang & Jingjing Liu & Longyang Huang & Kun Chen & Chenchen Zhao, 2021. "Identification and Prediction of Wetland Ecological Risk in Key Cities of the Yangtze River Economic Belt: From the Perspective of Land Development," Sustainability, MDPI, vol. 13(1), pages 1-17, January.
    4. Peacock, R. & Bently, M. & Rees, P. & Blignaut, J.N., 2023. "The benefits of ecological restoration exceed its cost in South Africa: An evidence-based approach," Ecosystem Services, Elsevier, vol. 61(C).
    5. Valencia Torres, Angélica & Tiwari, Chetan & Atkinson, Samuel F., 2021. "Progress in ecosystem services research: A guide for scholars and practitioners," Ecosystem Services, Elsevier, vol. 49(C).

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