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Projecting U.S. forest management, market, and carbon sequestration responses to a high-impact climate scenario

Author

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  • Baker, Justin S.
  • Van Houtven, George
  • Phelan, Jennifer
  • Latta, Gregory
  • Clark, Christopher M.
  • Austin, Kemen G.
  • Sodiya, Olakunle E.
  • Ohrel, Sara B.
  • Buckley, John
  • Gentile, Lauren E.
  • Martinich, Jeremy

Abstract

The impact of climate change on forest ecosystems remains uncertain, with wide variation in potential climate impacts across different radiative forcing scenarios and global circulation models, as well as potential variation in forest productivity impacts across species and regions. This study uses an empirical forest composition model to estimate the impact of climate factors (temperature and precipitation) and other environmental parameters on forest productivity for 94 forest species across the conterminous United States. The composition model is linked to a dynamic optimization model of the U.S. forestry sector to quantify economic impacts of a high warming scenario (Representative Concentration Pathway 8.5) under six alternative climate projections and two socioeconomic scenarios. Results suggest that forest market impacts and consumer impacts could range from relatively large losses (−$2.6 billion) to moderate gain ($0.2 billion) per year across climate scenarios. Temperature-induced higher mortality and lower productivity for some forest types and scenarios, coupled with increasing economic demands for forest products, result in forest inventory losses by end of century relative to the current climate baseline (3%–23%). Lower inventories and reduced carbon sequestration capacity result in additional economic losses of up to approximately $4.1 billion per year. However, our results also highlight important adaptation mechanisms, such forest type changes and shifts in regional mill capacity that could reduce the impact of high impact climate scenarios.

Suggested Citation

  • Baker, Justin S. & Van Houtven, George & Phelan, Jennifer & Latta, Gregory & Clark, Christopher M. & Austin, Kemen G. & Sodiya, Olakunle E. & Ohrel, Sara B. & Buckley, John & Gentile, Lauren E. & Mart, 2023. "Projecting U.S. forest management, market, and carbon sequestration responses to a high-impact climate scenario," Forest Policy and Economics, Elsevier, vol. 147(C).
  • Handle: RePEc:eee:forpol:v:147:y:2023:i:c:s1389934122002118
    DOI: 10.1016/j.forpol.2022.102898
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    1. Charlotte Janssens & Petr Havlík & Tamás Krisztin & Justin Baker & Stefan Frank & Tomoko Hasegawa & David Leclère & Sara Ohrel & Shaun Ragnauth & Erwin Schmid & Hugo Valin & Nicole Van Lipzig & Miet M, 2020. "Global hunger and climate change adaptation through international trade," Nature Climate Change, Nature, vol. 10(9), pages 829-835, September.
    2. Sohngen, Brent & Mendelsohn, Robert & Sedjo, Roger A., 2001. "A Global Model Of Climate Change Impacts On Timber Markets," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 26(2), pages 1-18, December.
    3. Baker, J.S. & Wade, C.M. & Sohngen, B.L. & Ohrel, S. & Fawcett, A.A., 2019. "Potential complementarity between forest carbon sequestration incentives and biomass energy expansion," Energy Policy, Elsevier, vol. 126(C), pages 391-401.
    4. Marc Hanewinkel & Dominik A. Cullmann & Mart-Jan Schelhaas & Gert-Jan Nabuurs & Niklaus E. Zimmermann, 2013. "Climate change may cause severe loss in the economic value of European forest land," Nature Climate Change, Nature, vol. 3(3), pages 203-207, March.
    5. Wade, Chrisopher M. & Baker, Justin S. & Latta , Greg & Ohrel, Sara B., 2019. "Evaluating Potential Sources of Aggregation Bias with a Structural Optimization Model of the U.S. Forest Sector," Journal of Forest Economics, now publishers, vol. 34(3-4), pages 337-366, November.
    6. Favero, Alice & Mendelsohn, Robert & Sohngen, Brent, 2018. "Can the Global Forest Sector Survive 11 °C Warming?," Agricultural and Resource Economics Review, Cambridge University Press, vol. 47(2), pages 388-413, August.
    7. Wear, David W. & Coulston, John W., 2019. "Specifying Forest Sector Models for Forest Carbon Projections," Journal of Forest Economics, now publishers, vol. 34(1-2), pages 73-97, August.
    8. Hellen Fernanda Viana Cunha & Kelly M. Andersen & Laynara Figueiredo Lugli & Flavia Delgado Santana & Izabela Fonseca Aleixo & Anna Martins Moraes & Sabrina Garcia & Raffaello Ponzio & Erick Oblitas M, 2022. "Direct evidence for phosphorus limitation on Amazon forest productivity," Nature, Nature, vol. 608(7923), pages 558-562, August.
    9. Johnston, Craig & Buongiorno, Joseph & Nepal, Prakash & Prestemon, Jeff, 2019. "From Source to Sink: Past Changes and Model Projections of Carbon Sequestration in the Global Forest Sector," Journal of Forest Economics, now publishers, vol. 34(1-2), pages 47-72, August.
    10. Eric C. Davis & Brent Sohngen & David J. Lewis, 2022. "The effect of carbon fertilization on naturally regenerated and planted US forests," Nature Communications, Nature, vol. 13(1), pages 1-11, December.
    11. Shinichiro Fujimori & Tomoko Hasegawa & Volker Krey & Keywan Riahi & Christoph Bertram & Benjamin Leon Bodirsky & Valentina Bosetti & Jessica Callen & Jacques Després & Jonathan Doelman & Laurent Drou, 2019. "A multi-model assessment of food security implications of climate change mitigation," Nature Sustainability, Nature, vol. 2(5), pages 386-396, May.
    12. Giovanni Forzieri & Vasilis Dakos & Nate G. McDowell & Alkama Ramdane & Alessandro Cescatti, 2022. "Emerging signals of declining forest resilience under climate change," Nature, Nature, vol. 608(7923), pages 534-539, August.
    13. Daigneault, Adam & Favero, Alice, 2021. "Global forest management, carbon sequestration and bioenergy supply under alternative shared socioeconomic pathways," Land Use Policy, Elsevier, vol. 103(C).
    14. Henderson, Jesse D. & Parajuli, Rajan & Abt, Robert C., 2020. "Biological and market responses of pine forests in the US Southeast to carbon fertilization," Ecological Economics, Elsevier, vol. 169(C).
    15. David Haim & Ralph J. Alig & Andrew J. Plantinga & Brent Sohngen, 2011. "Climate Change And Future Land Use In The United States: An Economic Approach," Climate Change Economics (CCE), World Scientific Publishing Co. Pte. Ltd., vol. 2(01), pages 27-51.
    16. Reilly, J. & Paltsev, S. & Felzer, B. & Wang, X. & Kicklighter, D. & Melillo, J. & Prinn, R. & Sarofim, M. & Sokolov, A. & Wang, C., 2007. "Global economic effects of changes in crops, pasture, and forests due to changing climate, carbon dioxide, and ozone," Energy Policy, Elsevier, vol. 35(11), pages 5370-5383, November.
    17. Baker, Justin S. & Crouch, Adam & Cai, Yongxia & Latta, Greg & Ohrel, Sara & Jones, Jason & Latané, Annah, 2018. "Logging residue supply and costs for electricity generation: Potential variability and policy considerations," Energy Policy, Elsevier, vol. 116(C), pages 397-409.
    18. Latta, Gregory S. & Baker, Justin S. & Ohrel, Sara, 2018. "A Land Use and Resource Allocation (LURA) modeling system for projecting localized forest CO2 effects of alternative macroeconomic futures," Forest Policy and Economics, Elsevier, vol. 87(C), pages 35-48.
    19. Jones, Jason P. H. & Baker, Justin S. & Austin, Kemen & Latta, Greg & Sohngen, Brent & Wade, Chrisopher M. & Cai, Yongxia & Aramayo-Lipa, Lindsay & Beach, Robert & Ohrel, Sara B. & Ragnauth, Shaun & C, 2019. "Importance of Cross-Sector Interactions When Projecting Forest Carbon across Alternative Socioeconomic Futures," Journal of Forest Economics, now publishers, vol. 34(3-4), pages 205-231, November.
    20. Sohngen, Brent & Tian, Xiaohui, 2016. "Global climate change impacts on forests and markets," Forest Policy and Economics, Elsevier, vol. 72(C), pages 18-26.
    21. P. Christensen & K. Gillingham & W. Nordhaus, 2018. "Uncertainty in forecasts of long-run economic growth," Proceedings of the National Academy of Sciences, Proceedings of the National Academy of Sciences, vol. 115(21), pages 5409-5414, May.
    22. Thomas, J. & Brunette, M. & Leblois, A., 2022. "The determinants of adapting forest management practices to climate change: Lessons from a survey of French private forest owners," Forest Policy and Economics, Elsevier, vol. 135(C).
    23. Hugo Valin & Ronald D. Sands & Dominique van der Mensbrugghe & Gerald C. Nelson & Helal Ahammad & Elodie Blanc & Benjamin Bodirsky & Shinichiro Fujimori & Tomoko Hasegawa & Petr Havlik & Edwina Heyhoe, 2014. "The future of food demand: understanding differences in global economic models," Agricultural Economics, International Association of Agricultural Economists, vol. 45(1), pages 51-67, January.
    24. Lantz, Van & McMonagle, Galen & Hennigar, Chris & Sharma, Chinmay & Withey, Patrick & Ochuodho, Thomas, 2022. "Forest succession, management and the economy under a changing climate: Coupling economic and forest management models to assess impacts and adaptation options," Forest Policy and Economics, Elsevier, vol. 142(C).
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