Pasture burning in Amazonia: Dynamics of residual biomass and the storage and release of aboveground carbon
- 20 November 1996
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research: Atmospheres
- Vol. 101 (D20) , 25847-25857
- https://doi.org/10.1029/96jd02090
Abstract
Aboveground biomass in cattle pasture converted from tropical dense forest was studied both before and after reburning in Brazilian Amazonia. In a 7‐year‐old pasture studied in Apiaú, Roraima, the aboveground dry weight of biomass (live plus dead) exposed to burning consisted of 96.3 t ha−1of original forest remains, 6.2 t ha−1of secondary successional vegetation (woody invaders in the pasture), and 8.0 t ha−1of pasture grass (carbon contents 48.2%, 45.4%, and 42.2%, respectively). In terms of carbon, burning efficiencies for these three categories were 13.2%, 66.7% and 94.6%, respectively. Net charcoal formation was 0.35 t C ha−1or 0.63% of the carbon exposed to the reburn, while the total accumulated since conversion (including the initial burn) is estimated at 2.3 t ha−1(1.82% of the predeforestation aboveground biomass carbon stock). The dynamics of the original forest remains were represented in simulations that included parameters such as charcoal formation, burning efficiency and carbon concentration in different biomass components. Releases from initial burning of the cleared forest (44.0 t C ha−1) plus releases over the course of the succeeding decade through combustion (12.5 t C ha−1) and decay (51.5 t C ha−1) total 92% of the original forest biomass carbon (126 t C ha−1). Of biomass carbon remaining after the initial burn (84.3 t C ha−1), 76.0% is released: 61.1% through decay and 14.9% through combustion in reburns, while 1.2% is net conversion to charcoal in the reburns. These results indicate an amount of charcoal accumulation that is smaller than some carbon calculations have assumed, therefore suggesting a greater impact on global warming from conversion of forest to pasture.This publication has 14 references indexed in Scilit:
- Carbon uptake by secondary forests in Brazilian AmazoniaForest Ecology and Management, 1996
- A Conservation Gap Analysis of Brazil's Amazonian VegetationConservation Biology, 1995
- Tropical deforestation and atmospheric carbon dioxideClimatic Change, 1991
- Biomass Burning in the Tropics: Impact on Atmospheric Chemistry and Biogeochemical CyclesScience, 1990
- Estimates of Annual and Regional Releases of CO2 and Other Trace Gases to the Atmosphere from Fires in the Tropics, Based on the FAO Statistics for the Period 1975–1980Published by Springer Nature ,1990
- On uncertainty in the computation of global emissions from biomass burningClimatic Change, 1989
- Land use change and carbon exchange in the tropics: III. Structure, basic equations, and sensitivity analysis of the modelEnvironmental Management, 1985
- A simulation study for the global carbon cycle, including man's impact on the biosphereClimatic Change, 1984
- Carbon Input to the Atmosphere from Forest FiresScience, 1979
- Atmospheric Input of Carbon Dioxide from Burning WoodScience, 1978