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The influence of discounting ecosystem services in robust multi-objective optimization – An application to a forestry-avocado land-use portfolio

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  • Jarisch, Isabelle
  • Bödeker, Kai
  • Bingham, Logan Robert
  • Friedrich, Stefan
  • Kindu, Mengistie
  • Knoke, Thomas

Abstract

Discounting is standard in economics to consider time preferences of people and account for future market changes. However, so far discounting has mainly been applied to monetary flows and ignored for many ecosystem services. In multi-objective optimization, selectively disregarding time preference for some non-monetary services create bias. Here we study how discounting a range of ecosystem service indicators influences a public planner's optimal land allocation. We used a robust multi-objective optimization approach to model a mixed forestry-avocado farm portfolio in South Africa. The objectives for optimization were the provisioning of various ecosystem services and disservices represented by four indicators: net present value, payback period, carbon sequestration, and fertilizer use. To account for time preferences concerning indicator flows, we applied specific discount rates to each ecosystem service indicator, depending on its character (non-monetary or monetary indicators). We demonstrate that discounting reduces the standard deviations of the discounted sum of the indicators, which leads to less diversified land-use portfolios. To account for discount rate uncertainty, we introduced three indicator sets simultaneously, each using a different discount rate, which was off setting the effect of decreasing diversification.

Suggested Citation

  • Jarisch, Isabelle & Bödeker, Kai & Bingham, Logan Robert & Friedrich, Stefan & Kindu, Mengistie & Knoke, Thomas, 2022. "The influence of discounting ecosystem services in robust multi-objective optimization – An application to a forestry-avocado land-use portfolio," Forest Policy and Economics, Elsevier, vol. 141(C).
  • Handle: RePEc:eee:forpol:v:141:y:2022:i:c:s1389934122000739
    DOI: 10.1016/j.forpol.2022.102761
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    2. G. Cornelis van Kooten, 2023. "Determining optimal forest rotation ages and carbon offset credits: Accounting for post‐harvest carbon storehouses," Canadian Journal of Agricultural Economics/Revue canadienne d'agroeconomie, Canadian Agricultural Economics Society/Societe canadienne d'agroeconomie, vol. 71(2), pages 255-272, June.
    3. Mengistie Kindu & Logan Robert Bingham & José G. Borges & Susete Marques & Olha Nahorna & Jeannette Eggers & Thomas Knoke, 2022. "Opportunity Costs of In Situ Carbon Storage Derived by Multiple-Objective Stand-Level Optimization—Results from Case Studies in Portugal and Germany," Land, MDPI, vol. 11(11), pages 1-12, November.
    4. Mohammadyari, Fatemeh & Tavakoli, Mohsen & Zarandian, Ardavan & Abdollahi, Sedighe, 2023. "Optimization land use based on multi-scenario simulation of ecosystem service for sustainable landscape planning in a mixed urban - Forest watershed," Ecological Modelling, Elsevier, vol. 483(C).

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