Rapid transformation of ambient absorbing aerosols from West African biomass burning

Seasonal biomass burning (BB) over West Africa is a globally significant source of carbonaceous particles in the atmosphere, which have important climate impacts but are poorly constrained. Here, the evolution of smoke aerosols emitted from flaming-controlled burning of agricultural waste and wooded...

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Veröffentlicht in:Atmospheric chemistry and physics 2021-06, Vol.21 (12), p.9417-9440
Hauptverfasser: Wu, Huihui, Taylor, Jonathan W, Langridge, Justin M, Yu, Chenjie, Allan, James D, Szpek, Kate, Cotterell, Michael I, Williams, Paul I, Flynn, Michael, Barker, Patrick, Fox, Cathryn, Allen, Grant, Lee, James, Coe, Hugh
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Sprache:eng
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Zusammenfassung:Seasonal biomass burning (BB) over West Africa is a globally significant source of carbonaceous particles in the atmosphere, which have important climate impacts but are poorly constrained. Here, the evolution of smoke aerosols emitted from flaming-controlled burning of agricultural waste and wooded savannah in the Senegal region was characterized over a timescale of half-day advection from the source during the MOYA-2017 (Methane Observation Yearly Assessment-2017) aircraft campaign. Plumes from such fire types are rich in black carbon (BC) emissions. Concurrent measurements of chemical composition, organic aerosol (OA) oxidation state, bulk aerosol size and BC mixing state reveal that emitted BB submicron aerosols changed dramatically with time. Various aerosol optical properties (e.g. absorption Ångström exponent – AAE – and mass absorption coefficients – MACs) also evolved with ageing. In this study, brown carbon (BrC) was a minor fractional component of the freshly emitted BB aerosols (
ISSN:1680-7324
1680-7316
1680-7324
DOI:10.5194/acp-21-9417-2021