Airborne measurements of carbonaceous aerosols in southern Africa during the dry, biomass burning season

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Particulate matter collected aboard the University of Washington's Convair-580 research aircraft over southern Africa during the dry, biomass burning season was analyzed for total carbon, organic carbon, and black carbon contents using thermal and optical methods. Samples were collected in smoke plumes of burning savanna and in regional haze. A known artifact, produced by the adsorption of organic gases on the quartz filter substrates used to collect the particulate matter samples, comprised a significant portion of the total carbon collected. Consequently, conclusions derived from the data are greatly dependent on whether or not organic carbon concentrations are corrected for this ... continued below

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Kirchstetter, Thomas W.; Novakov, T.; Hobbs, Peter V. & Magi, Brian June 17, 2002.

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Particulate matter collected aboard the University of Washington's Convair-580 research aircraft over southern Africa during the dry, biomass burning season was analyzed for total carbon, organic carbon, and black carbon contents using thermal and optical methods. Samples were collected in smoke plumes of burning savanna and in regional haze. A known artifact, produced by the adsorption of organic gases on the quartz filter substrates used to collect the particulate matter samples, comprised a significant portion of the total carbon collected. Consequently, conclusions derived from the data are greatly dependent on whether or not organic carbon concentrations are corrected for this artifact. For example, the estimated aerosol co-albedo (1 - single scattering albedo), which is a measure of aerosol absorption, of the biomass smoke samples is 60 percent larger using corrected organic carbon concentrations. Thus, the corrected data imply that the biomass smoke is 60 percent more absorbing than do the uncorrected data. The black carbon to (corrected) organic carbon mass ratio (BC/OC) of smoke plume samples (0.18/2610.06) is lower than that of samples collected in the regional haze (0.25/2610.08). The difference may be due to mixing of biomass smoke with background air characterized by a higher BC/OC ratio. A simple source apportionment indicates that biomass smoke contributes about three-quarters of the aerosol burden in the regional haze, while other sources (e.g., fossil fuel burning) contribute the remainder.

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  • Journal Name: Journal of Geophysical Research - Atmospheres; Journal Volume: 108; Journal Issue: D13; Other Information: Journal Publication Date: 02/20/2003

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  • Report No.: LBNL--50880
  • Grant Number: AC03-76SF00098
  • Office of Scientific & Technical Information Report Number: 825310
  • Archival Resource Key: ark:/67531/metadc785345

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  • June 17, 2002

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  • Dec. 3, 2015, 9:30 a.m.

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  • April 1, 2016, 8:36 p.m.

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Kirchstetter, Thomas W.; Novakov, T.; Hobbs, Peter V. & Magi, Brian. Airborne measurements of carbonaceous aerosols in southern Africa during the dry, biomass burning season, article, June 17, 2002; Berkeley, California. (digital.library.unt.edu/ark:/67531/metadc785345/: accessed August 24, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.