Carbon Sequestration in Global Forests Under Different Carbon Price Regimes
- 1 June 2006
- journal article
- Published by SAGE Publications in The Energy Journal
- Vol. 27 (3_suppl) , 109-126
- https://doi.org/10.5547/issn0195-6574-ej-volsi2006-nosi3-6
Abstract
This paper examines the potential role of carbon sequestration in forests under a range of exogenously chosen carbon price paths. The price paths were chosen to simulate several different climate change policies. The results indicate that global sequestration could range from 48-147 Pg C by 2105 for carbon prices ranging from $100 to more than $800 per t C by the end of the century. The timing of sequestration is found to be sensitive to the assumed carbon price path. Low initial carbon prices ($10 - $20 per t C in 2010) followed by rapid price increases, as might occur if policy makers try to stabilize future concentrations, suggest little, if any, sequestration during the next 20 years (-0.2 to 4.5 Pg C). If policy makers develop policies that support higher initial carbon prices, ranging from $75 to $100 per t C, 17 to 23 Pg C could be sequestered in forests over the next 20 years. Overall, our results indicate that forestry is not an efficient stopgap measure for long-term policy goals, but that it is instead an important longterm partner with other mitigation options.Keywords
This publication has 13 references indexed in Scilit:
- A Review of Forest Carbon Sequestration Cost Studies: A Dozen Years of ResearchClimatic Change, 2004
- An Optimal Control Model of Forest Carbon SequestrationAmerican Journal of Agricultural Economics, 2003
- Revised estimates of the annual net flux of carbon to the atmosphere from changes in land use and land management 1850-2000Tellus B: Chemical and Physical Meteorology, 2003
- Revision of the global carbon budget due to changing air‐sea oxygen fluxesGlobal Biogeochemical Cycles, 2002
- Estimating Carbon Supply Curves for Global Forests and Other Land Uses April 2001, Discussion Paper 01-19Published by Office of Scientific and Technical Information (OSTI) ,2001
- Global energy system to maintain atmospheric CO2 concentration at 550 ppmEnvironmental Economics and Policy Studies, 2000
- ERIS: A model prototype with endogenous technological changeInternational Journal of Global Energy Issues, 2000
- Forest Management, Conservation, and Global Timber MarketsAmerican Journal of Agricultural Economics, 1999
- Assessment of technological options in the global energy system for limiting the atmospheric CO2 concentrationEnvironmental Economics and Policy Studies, 1998
- Carbon Pools and Flux of Global Forest EcosystemsScience, 1994