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Multi-objective optimization to evaluate tradeoffs among forest ecosystem services following fire hazard reduction in the Deschutes National Forest, USA

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  • Schroder, Svetlana A. (Kushch)
  • Tóth, Sándor F.
  • Deal, Robert L.
  • Ettl, Gregory J.

Abstract

Forest owners worldwide are increasingly interested in managing forests to provide a broad suite of ecosystem services, balancing multiple objectives and evaluating management activities in terms of potential tradeoffs. We describe a multi-objective mathematical programming model to quantify tradeoffs in expected sediment delivery and the preservation of Northern spotted owl (NSO) habitat following fuel treatments to reduce fire hazard in the Deschutes National forest in Central Oregon, USA. Our model integrates the management objective of fire hazard reduction and the provision of ecosystem services (water quality and NSO habitat protection) and helps evaluate tradeoffs among them. Our results suggest significant reductions in fire hazard can be achieved without compromising any NSO habitat by strategically placing the treatments; however, the treatments will lead to a short term increase in sediment delivery. An analysis of environmental risks showed that over the longer term, the increase in sediment delivery and NSO habitat loss caused by wildfires would be 30–50% greater in areas without fuel treatments. The use of the multi-objective optimization model described in this study can help managers quantify and assess potential tradeoffs among ecosystem services and provide data for more informed decision making.

Suggested Citation

  • Schroder, Svetlana A. (Kushch) & Tóth, Sándor F. & Deal, Robert L. & Ettl, Gregory J., 2016. "Multi-objective optimization to evaluate tradeoffs among forest ecosystem services following fire hazard reduction in the Deschutes National Forest, USA," Ecosystem Services, Elsevier, vol. 22(PB), pages 328-347.
  • Handle: RePEc:eee:ecoser:v:22:y:2016:i:pb:p:328-347
    DOI: 10.1016/j.ecoser.2016.08.006
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    References listed on IDEAS

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    1. Bare, B. Bruce & Mendoza, Guillermo, 1988. "Multiple objective forest land management planning: An illustration," European Journal of Operational Research, Elsevier, vol. 34(1), pages 44-55, February.
    2. Deal, Robert L. & Cochran, Bobby & LaRocco, Gina, 2012. "Bundling of ecosystem services to increase forestland value and enhance sustainable forest management," Forest Policy and Economics, Elsevier, vol. 17(C), pages 69-76.
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    Cited by:

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    2. Belavenutti, Pedro & Ager, Alan A. & Day, Michelle A. & Chung, Woodam, 2022. "Designing forest restoration projects to optimize the application of broadcast burning," Ecological Economics, Elsevier, vol. 201(C).
    3. Brias, Antoine & Munch, Stephan B., 2021. "Ecosystem based multi-species management using Empirical Dynamic Programming," Ecological Modelling, Elsevier, vol. 441(C).
    4. Jacobs, Sander & Dendoncker, Nicolas & Martín-López, Berta & Barton, David Nicholas & Gomez-Baggethun, Erik & Boeraeve, Fanny & McGrath, Francesca L. & Vierikko, Kati & Geneletti, Davide & Sevecke, Ka, 2016. "A new valuation school: Integrating diverse values of nature in resource and land use decisions," Ecosystem Services, Elsevier, vol. 22(PB), pages 213-220.
    5. Manners, Rhys & Varela-Ortega, Consuelo, 2018. "The Role of Decision-making in Ecosystem Service Trade-offs in Lowland Bolivia's Amazonian Agricultural Systems," Ecological Economics, Elsevier, vol. 153(C), pages 31-42.
    6. Elliot, Thomas & Bertrand, Alexandre & Babí Almenar, Javier & Petucco, Claudio & Proença, Vânia & Rugani, Benedetto, 2019. "Spatial optimisation of urban ecosystem services through integrated participatory and multi-objective integer linear programming," Ecological Modelling, Elsevier, vol. 409(C), pages 1-1.
    7. Zanchi, Giuliana & Brady, Mark V., 2019. "Evaluating the contribution of forest ecosystem services to societal welfare through linking dynamic ecosystem modelling with economic valuation," Ecosystem Services, Elsevier, vol. 39(C).

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