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Greenhouse gas emissions from vegetation fires in Southern Africa

  • Part III. Greenhouse Gas Emission Inventories And Mitigation Options: Methodological Issues
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Abstract

Methane (CH4), carbon monoxide (CO), nitrogen oxides (NOx), volatile organic carbon, and aerosols emitted as a result of the deliberate or accidental burning of natural vegetation constitute a large component of the greenhouse gas emissions of many African countries, but the data needed for calculating these emissions by the IPCC methodology is sparse and subject to estimation errors. An improved procedure for estimating emissions from fires in southern Africa has been developed. The proposed procedure involves reclassifying existing vegetation maps into one of eleven broad, functional vegetation classes. Fuel loads are calculated within each 0.5 × 0.5° cell based on empirical relationships to climate data for each class. The fractional area of each class that burns is estimated by using daily low-resolution satellite fire detection, which is calibrated against a subsample of pre- and post-fire high-resolution satellite images. The emission factors that relate the quantity of gas released to the mass of fuel burned are based on recent field campaigns in Africa and are related to combustion efficiency, which is in turn related to the fuel mix. The emissions are summed over the 1989 fire season for Africa south of the equator. The estimated emissions from vegetation burning in the subcontinent are 0.5 Tg CH4, 14.9 Tg CO, 1.05 Tg NOx, and 1.08 Tg of particles smaller than 2.5µm. The 324 Tg CO2 emitted is expected to be reabsorbed in subsequent years. These estimates are smaller than previous estimates.

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References

  • Andreae, M.O., Fishman, J., Garstang, M., Goldammer, J.G., Justice, C.O., Lovino, J.S., Scholes, R.J., Stocks, B.J., Thompson, A.M., van Wilgen, B., and STARE/TRACE-A SAFARI Science Team: 1994, Biomass burning in the global environment: first results from the IGAC/BIBEX field campaign STARE/TRACE-A/SAFARI-92, in Global Atmospheric-Biospheric Chemistry, Prinn, R.G. (ed.), New York: Plenum Press, 83–100.

    Google Scholar 

  • Booth, T.H., Stein, J.A., Nix, H.A., and Hutchinson, M.F.: 1989, Mapping regions climatically suitable for particular species: an example using Africa, Forest Ecology and Management 28, 18–31.

    Google Scholar 

  • Crutzen, P.J. and Andreae, M.O.: 1990, Biomass burning in the tropics: impact on atmospheric chemistry and biogeochemical cycles, Science 250, 1669–1678.

    Google Scholar 

  • Delmas, R.A., Loudjani, P., Podaire, A., and Menaut, J.C.: 1991, Biomass burning in Africa: an assessment of annually burned biomass, in Global Biomass Burning: Atmospheric, Climatic and Biospheric Implications, Levine, J.S. (ed.), Cambridge, Massachusetts: MIT Press, 126–132.

    Google Scholar 

  • East, R.: 1984, Rainfall, soil nutrient status and biomass of large African savanna mammals, African Journal of Ecology 22, 245–70.

    Google Scholar 

  • Goldammer, J.G.: 1993, Historical biogeography of fire: tropical and subtropical, in Fire in the Environment: The Ecological, Atmospheric and Climatic Importance of Vegetation Fires, Crutzen, P.J., and Goldammer, J.G. (eds.), Dahlem Workshop Reports, Environmental Sciences Research Report 13, Chichester: John Wiley & Sons, 298–314.

    Google Scholar 

  • Hao, W.M., Liu M.H., and Crutzen, P.J.: 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 1975–1980, in Fire in the Tropical Biota: Ecosystem Processes and Global Goldammer, J.G. (ed.), Ecological Studies 84, Berlin: Springer-Verlag, 440–462.

    Google Scholar 

  • Lacaux, J.P., Cachier, H., and Delmas, R.: 1993, Biomass burning in Africa: an overview of its impact on atmospheric chemistry, in Fire in the Environment: The Ecological, Atmospheric and Climatic Importance of Vegetation Fires, Crutzen, P.J., and Goldammer, J.G. (eds.), Dahlem Workshop Reports, Environmental Sciences Research Report 13, Chichester: John Wiley & Sons, 159–192.

    Google Scholar 

  • Levine, J.S.: 1990, Global biomass burning: atmospheric, climatic and biospheric implications. EOS 71, 1075–1077.

    Google Scholar 

  • Lobert, J.M., Scharffe, D.H., Hao, W.-M., Kuhlbusch, T.A., Seuwen, R., Warneck, P., and Crutzen, P.J.: 1991, Experimental evaluation of biomass burning emissions: nitrogen carbon containing compounds, in Global Biomass Burning: Atmospheric, Climatic and Biospheric Implications, Levine, J.S. (ed.), Cambridge, Massachusetts: MIT Press, 289–304.

    Google Scholar 

  • Menaut, J.C., Abaddie, L., Lavenu, F., Loudjani, P., and Podair, A.: 1991, Biomass burning in West African savannas, in Global Biomass Burning: Atmospheric, Climatic and Biospheric Implications, Levine, J.S. (ed.), Cambridge, Massachusetts: MIT Press, 133–142.

    Google Scholar 

  • Organisation for Economic Co-operation and Development (OECD): 1991, Estimation of greenhouse gas emissions and sinks. Paris, France: OECD.

    Google Scholar 

  • Scholes, R.J., Kendall, J., and Justice, C.O.: 1995, Biomass burning in southern-hemisphere Africa, Journal of Geophysical Research. in press.

  • Scholes, R.J., Ward, D., and Justice, C.O.: 1995, Trace gas emissions from biomass burning in southern-hemisphere Africa, Journal of Geophysical Research. in press.

  • UNEP, OECD, IEA, IPCC (United Nations Environment Programme, Organisation for Economic Cooperation and Development, International Energy Agency, Intergovernmental Panel on Climate Change): 1995, IPCC Guidelines for National Greenhouse Gas Inventories, IPCC, Bracknell, 3 Volumes.

    Google Scholar 

  • Ward, D.E., Hao, M., Susott, R.A., Babitt, R.A., Shea, R.W., Kauffman, J.B., and Justice, C.O.: 1995, Effect of fuel composition on combustion efficiency and emission factors for African savanna ecosystems, Journal of Geophysical Research. in press.

  • Ward, D.E. and Radke, L.F.: 1993, Emission measurements from vegetation fires: comparative evaluation of methods and results, in Fire in the Environment: The Ecological, Atmospheric and Climatic Importance of Vegetation Fires, Crutzen, P.J., and Goldammer, J.G. (eds.), Dahlem Workshop Reports, Environmental Sciences Research Report 13, Chichester: John Wiley & Sons, 53–76.

    Google Scholar 

  • White, F.: 1983, The Vegetation of Africa, Natural Resources Research XX, Paris: Unesco, 356.

    Google Scholar 

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Scholes, R.J. Greenhouse gas emissions from vegetation fires in Southern Africa. Environ Monit Assess 38, 169–179 (1995). https://doi.org/10.1007/BF00546761

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