Global fire emissions and the contribution of deforestation, savanna, forest, agricultural, and peat fires (1997-2009)
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- Type
- article
- Published
- 2010-12-01
- Cited by
- 2,863
- References
- 137
- Access
- Open access
- OpenAlex
- https://openalex.org/W2134927874
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38775031
Keywords
Peat, Deforestation (computer science), Environmental science, Agriculture, Agroforestry
References
- Influences of boreal fire emissions on Northern Hemisphere atmospheric carbon and carbon monoxide
- Distribution of aboveground live biomass in the Amazon basin
- Mitigation and Adaptation Strategies for Global Change
- Seasonal variation and ecosystem dependence of emission factors for selected trace gases and PM2.5 for southern African savanna fires
- Climate controls on the variability of fires in the tropics and subtropics
- Global carbon emissions from biomass burning in the 20th century
- Interannual growth rate variations of atmospheric CO2 and its δ13C, H2, CH4, and CO between 1992 and 1999 linked to biomass burning
- Estimating fire emissions and disparities in boreal Siberia (1998–2002)
- An Enhanced Contextual Fire Detection Algorithm for MODIS
- Emissions of CO2, CO, and hydrocarbons from fires in diverse African savanna ecosystems
- Climate regulation of fire emissions and deforestation in equatorial Asia
- A multi-year active fire dataset for the tropics derived from the TRMM VIRS
- Impacts of biomass burning on tropospheric CO, NOx, and O3
- Global net primary production: Combining ecology and remote sensing
- Ecosystem-level patterns of primary productivity and herbivory in terrestrial habitats
- Burnt area detection at global scale using ATSR‐2: The GLOBSCAR products and their qualification
- Biomass Burning in the Tropics: Impact on Atmospheric Chemistry and Biogeochemical Cycles
- Ecology: Human role in Russian wild fires
- Global characterization of fire activity: toward defining fire regimes from Earth observation data
- Spatial and temporal variability in the ratio of trace gases emitted from biomass burning
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- Trend in global black carbon emissions from 1960 to 2007.
- A multi-scale health impact assessment of air pollution over the 21st century.
- Fire carbon emissions over maritime southeast Asia in 2015 largest since 1997
- Mitigating wildfire carbon loss in managed northern peatlands through restoration
- Competing consumers: contrasting the patterns and impacts of fire and mammalian herbivory in Africa
- Climate-driven ground-level ozone extreme in the fall over the Southeast United States
- Evaluations of tropospheric aerosol properties simulated by the community earth system model with a sectional aerosol microphysics scheme
- Predicting Chronic Climate-Driven Disturbances and Their Mitigation.
- Climate influences on infectious diseases in Nigeria, West Africa
- Estimating carbon sequestration cost function for developing countries
- Investigation of the impacts of emissions on the trace gas budgets in the troposphere by using global climate chemistry model simulations
- Technical Report Series on Global Modeling and Data Assimilation. Volume 32; Estimates of AOD Trends (2002 - 2012) Over the World's Major Cities Based on the MERRA Aerosol Reanalysis
- The Regulation of Ecological Communities Through Feedback Loops: A Review
- The effect of land-use change on the net exchange rates of greenhouse gases: A compilation of estimates
- Modélisation régionale de la composition chimique des aérosols prélevés au puy de Dôme (France)
- Understanding interannual variations of biomass burning from Peninsular Southeast Asia, part II: Variability and different influences in lower and higher atmosphere levels
- Direct and semi-direct aerosol effects on the southern African regional climate during the austral winter season
- Ozone-induced stomatal sluggishness changes carbon and water balance of temperate deciduous forests
- Sensitivity of global wildfire occurrences to various factors in the context of global change
- Biophysical Applications of Satellite Remote Sensing
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