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Conservation of forest biodiversity using temporal conservation contracts

Author

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  • Juutinen, Artti
  • Reunanen, Pasi
  • Mönkkönen, Mikko
  • Tikkanen, Olli-Pekka
  • Kouki, Jari

Abstract

Temporal conservation contracts are used to protect biodiversity in privately owned lands worldwide. We examine how stand characteristics and habitat requirements of target species affect the contract length in a boreal forest context. We develop an integrated optimization model and apply the model with data on endangered species occurring in spruce forests in Finland. The results suggest that a cost-effective conservation policy for protecting privately owned forest land involves both short- and long-term contracts between landowners and environmental agencies. The higher the conservation objective, the more intensively long-term contracts should be assigned. Managed stands should be assigned short-term contracts. Regarding unmanaged stands both short- and long‐term contracts should be used. However, species habitat requirements affect the results and thus the conservation policy.

Suggested Citation

  • Juutinen, Artti & Reunanen, Pasi & Mönkkönen, Mikko & Tikkanen, Olli-Pekka & Kouki, Jari, 2012. "Conservation of forest biodiversity using temporal conservation contracts," Ecological Economics, Elsevier, vol. 81(C), pages 121-129.
  • Handle: RePEc:eee:ecolec:v:81:y:2012:i:c:p:121-129
    DOI: 10.1016/j.ecolecon.2012.06.015
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    References listed on IDEAS

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    1. Juutinen, Artti, 2008. "Old-growth boreal forests: Worth protecting for biodiversity?," Journal of Forest Economics, Elsevier, vol. 14(4), pages 242-267, November.
    2. Gulati, Sumeet & Vercammen, James, 2005. "The Optimal Length of an Agricultural Carbon Contract," Working Papers 37027, University of Victoria, Resource Economics and Policy.
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    4. Sumeet Gulati & James Vercammen, 2005. "The Optimal Length of an Agricultural Carbon Contract," Canadian Journal of Agricultural Economics/Revue canadienne d'agroeconomie, Canadian Agricultural Economics Society/Societe canadienne d'agroeconomie, vol. 53(4), pages 359-373, December.
    5. Strang, William J, 1983. "On the Optimal Forest Harvesting Decision," Economic Inquiry, Western Economic Association International, vol. 21(4), pages 576-583, October.
    6. Johansson, Robert C., 2006. "Participant Bidding Enhances Cost Effectiveness," Economic Brief 34085, United States Department of Agriculture, Economic Research Service.
    7. Juutinen, Artti & Mönkkönen, Mikko & Ylisirniö, Anna-Liisa, 2009. "Does a voluntary conservation program result in a representative protected area network?: The case of Finnish privately owned forests," Ecological Economics, Elsevier, vol. 68(12), pages 2974-2984, October.
    8. Markku Ollikainen & Erkki Koskela, 2001. "Optimal Private and Public Harvesting under Spatial and Temporal Interdependence," CESifo Working Paper Series 452, CESifo.
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    Cited by:

    1. Rabotyagov, Sergey S. & Lin, Sonja, 2013. "Small forest landowner preferences for working forest conservation contract attributes: A case of Washington State, USA," Journal of Forest Economics, Elsevier, vol. 19(3), pages 307-330.
    2. Miljand, Matilda & Bjärstig, Therese & Eckerberg, Katarina & Primmer, Eeva & Sandström, Camilla, 2021. "Voluntary agreements to protect private forests – A realist review," Forest Policy and Economics, Elsevier, vol. 128(C).
    3. Juutinen, Artti & Ollikainen, Markku & Mönkkönen, Mikko & Reunanen, Pasi & Tikkanen, Olli-Pekka & Kouki, Jari, 2014. "Optimal contract length for biodiversity conservation under conservation budget constraint," Forest Policy and Economics, Elsevier, vol. 47(C), pages 14-24.
    4. Nguyen, Trung Thanh & Nghiem, Nhung, 2016. "Optimal forest rotation for carbon sequestration and biodiversity conservation by farm income levels," Forest Policy and Economics, Elsevier, vol. 73(C), pages 185-194.

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