Error propagation and scaling for tropical forest biomass estimates
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Open Access
- 29 March 2004
- journal article
- research article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 359 (1443) , 409-420
- https://doi.org/10.1098/rstb.2003.1425
Abstract
The remaining carbon stocks in wet tropical forests are currently at risk because of anthropogenic deforestation, but also because of the possibility of release driven by climate change. To identify the relative roles of CO2 increase, changing temperature and rainfall, and deforestation in the future, and the magnitude of their impact on atmospheric CO2 concentrations, we have applied a dynamic global vegetation model, using multiple scenarios of tropical deforestation (extrapolated from two estimates of current rates) and multiple scenarios of changing climate (derived from four independent offline general circulation model simulations). Results show that deforestation will probably produce large losses of carbon, despite the uncertainty about the deforestation rates. Some climate models produce additional large fluxes due to increased drought stress caused by rising temperature and decreasing rainfall. One climate model, however, produces an additional carbon sink. Taken together, our estimates of additional carbon emissions during the twenty–first century, for all climate and deforestation scenarios, range from 101 to 367 Gt C, resulting in CO2 concentration increases above background values between 29 and 129 p.p.m. An evaluation of the method indicates that better estimates of tropical carbon sources and sinks require improved assessments of current and future deforestation, and more consistent precipitation scenarios from climate models. Notwithstanding the uncertainties, continued tropical deforestation will most certainly play a very large role in the build–up of future greenhouse gas concentrations.Keywords
This publication has 44 references indexed in Scilit:
- Biomass estimation in the Tapajos National Forest, BrazilForest Ecology and Management, 2001
- Tree damage, allometric relationships, and above-ground net primary production in central Amazon forestForest Ecology and Management, 2001
- Reducing uncertainty in the use of allometric biomass equations for predicting above-ground tree biomass in mixed secondary forestsPublished by Elsevier ,2001
- Landscape-scale variation in forest structure and biomass in a tropical rain forestForest Ecology and Management, 2000
- Relationship between soils and Amazon forest biomass: a landscape-scale studyForest Ecology and Management, 1999
- Biomass equations for sixty-five North American tree speciesForest Ecology and Management, 1997
- Wood density for estimating forest biomass in Brazilian AmazoniaForest Ecology and Management, 1997
- Amazonian deforestation and global warming: carbon stocks in vegetation replacing Brazil's Amazon forestForest Ecology and Management, 1996
- A critique of permanent plot methods and analysis with examples from Budongo Forest, UgandaForest Ecology and Management, 1995
- Identifying fast-growing native trees from the neotropics using data from a large, permanent census plotForest Ecology and Management, 1993