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Assessing the long-term interactions of climate change and timber markets on forest land and carbon storage

Datos Bibliográficos

ID15547751
AutoresAlice Favero (0000-0002-2092-6711, Georgia Institute of Technology, autor de correspondencia), Rebecca Mendelsohn (0000-0002-3650-6201, Yale University), Robert Mendelsohn, Brent Sohngen (0000-0002-9094-160X, The Ohio State University), Benjamin D Stocker (0000-0003-2697-9096, Swiss Federal Institute for Forest, Snow and Landscape Research)
Año2020
Volumen16
Número1
Páginas014051-014051
Fecha de publicación2020-12-22
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/abd589
OpenAlexW3114738583
IdiomaEN
Citas recibidas10
Referencias citadas35

This study provides a comprehensive assessment of the environmental and economic impacts of climate change on global and regional forests from now through 2200. By integrating the representative concentration pathway (RCP) 2.6 and RCP 8.5 emission scenarios with climate models, a vegetation model, socio-economic scenarios, and a forest economic model, the study explores long run adjustments of both ecosystems and markets to climate change that have not been studied before. The ecological model suggests that global forest productivity increases under RCP 8.5. The overall supply of timber expands faster than demand through the 23rd century lowering timber prices and creating net benefits in the timber sector. Consumers benefit the most from the lower prices but these same low prices tend to damage forest owners, especially in the tropics. Even without a formal sequestration policy, average global forest carbon is projected to increase by 6%–8% by 2100. Under the RCP 2.6, forest carbon remains stable through 2200 but under RCP 8.5 it is simulated to increase by another 8% with a very heterogeneous distribution across world regions. Under both RCPs, global forest area is projected to increase relative to a no-climate change case until 2150, but possibly decline thereafter

Agroforestry · Carbon dioxide · Carbon sequestration · Climate change · Climate change mitigation · Climate model · Economics · Ecosystem · Forest ecology · Global warming · Greenhouse gas · Natural resource economics · Productivity · Representative Concentration Pathways · Climate Change Policy and Economics · Economic and Environmental Valuation · Environmental Science · Forest Management and Policy · Ecology

  • Costs of forest carbon sequestration in the presence of climate change impacts

    Open Access•Alla Golub, Brent Sohngen et al.•Environmental Research Letters•2022

  • Forest sector models for tropical countries - A case study of Colombia

    Open Access•Oscar Martínez-Cortés, Óscar Geovani Martínez-Cortés et al.•Forest Policy and Economics•2024

  • Climate change and timber in Latin America

    Open Access•Alice Favero, Brent Sohngen et al.•Forest Policy and Economics•2021

  • How the future of the global forest sink depends on timber demand, forest management, and carbon policies

    Open Access•Adam Daigneault, Justin S Baker et al.•Global Environmental Change•2022

  • Adapting forest management to climate change impacts and policy targets in the EU

    Open Access•Andrey Lessa Derci Augustynczik, Mykola Gusti et al.•One Earth•2025

  • Global carbon storage in harvested wood products

    Open Access•Madisen Fuller, Justin S Baker et al.•Environmental Research Letters•2025

  • Scoping review of carbon pricing systems in forest sector models

    Open Access•Tomke Honkomp, Franziska Schier•Environmental Research Letters•2023

  • Climate and socioeconomic impacts on Maine's forests under alternative future pathways

    Open Access•Jianheng Zhao, Adam Daigneault et al.•Ecological Economics•2023

  • Global forest management, carbon sequestration and bioenergy supply under alternative shared socioeconomic pathways

    Open Access•Adam Daigneault, Alice Favero•Land Use Policy•2021

  • Modeling the effects of carbon payments and forest owner cooperatives on carbon storage and revenue in Pacific Northwest forestlands

    Open Access•Pranab K Roy Chowdhury, David G Brown et al.•Land Use Policy•2023

  • Impact of anthropogenic climate change on wildfire across western US forests

    Open Access•John T Abatzoglou, Park Williams et al.•Proceedings of the National…•2016

  • Adapt to more wildfire in western North American forests as climate changes

    Open Access•Tania Schoennagel, Jennifer K Balch et al.•Proceedings of the National…•2017

  • Warming and Earlier Spring Increase Western U.S. Forest Wildfire Activity

    Open Access•A L Westerling, Hugo G Hidalgo et al.•Science•2006

  • An Optimal Control Model of Forest Carbon Sequestration

    Open Access•Brent Sohngen, Rebecca Mendelsohn et al.•American Journal of Agricultural…•2003

  • Climate change impacts on US agriculture and forestry

    Open Access•Robert H Beach, Yongxia Cai et al.•Environmental Research Letters•2015

  • Global climate change impacts on forests and markets

    Open Access•Xiaohui Tian, Brent Sohngen et al.•Environmental Research Letters•2016

  • Regional economic impacts of climate change and adaptation in Canadian forests

    Open Access•Thomas O Ochuodho, Van Lantz et al.•Forest Policy and Economics•2012

  • Economic impacts of accelerating forest growth in Europe

    Open Access•Birger Solberg, Alexander Moiseyev et al.•Forest Policy and Economics•2003

  • The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications

    Open Access•Keywan Riahi, Detlef P Van Vuuren et al.•Global Environmental Change•2016

Obras citantes distintas10
Citas por año2
Intervalo de citas2021 - 2025 (5)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 10
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