Title of article :
Constraining the density and complex refractive index of elemental and organic carbon in biomass burning aerosol using optical and chemical measurements
Author/Authors :
G. Schkolnik، نويسنده , , B. Lal and D. Chand ، نويسنده , , A. Hoffer، نويسنده , , M.O. Andreae، نويسنده , , C. Erlick، نويسنده , , E. Swietlicki، نويسنده , , Y. Rudich، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
12
From page :
1107
To page :
1118
Abstract :
The role of biomass burning aerosols in the climate system is still poorly quantified, in part due to uncertainties regarding the optical properties of elemental and organic carbon (EC and OC, respectively), the main constituents of pyrogenic aerosols. In this study, we utilize comprehensive physical and chemical field measurements of biomass burning aerosols in Brazil to constrain the densities and refractive indices (RI) of EC and OC in these particles, by comparing their optically and chemically derived RI. The optically derived effective RI are retrieved from the measured absorption and scattering coefficients using a Mie scattering algorithm, and serve as a reference dataset, while the chemically derived effective RI are calculated from the measured chemical composition using electromagnetic mixing rules. The results are discussed in light of the observed combustion conditions, and in an effort to derive conclusions as to the chemical and optical properties of the usually less well-characterized components of biomass burning aerosols, namely, elemental carbon and organic matter. The best agreement between the optically and chemically derived RI was achieved by assigning a density of and refractive index RIEC=1.87-0.22i to the EC component, and and RI=1.4-0i to the unidentified organic matter fraction of the particles. These parameters suggest low graphitization levels for the EC, and a dominant proportion of aliphatic compounds in the unidentified organic matter. Combining the density and RI of the unidentified organic matter with the properties of the chemically characterized organic fraction yields and RI=1.3-0i for the total aerosol OC.
Keywords :
Biomass burning , Aerosol optical properties , organic carbon , refractive index , Elemental carbon
Journal title :
Atmospheric Environment
Serial Year :
2007
Journal title :
Atmospheric Environment
Record number :
760035
Link To Document :
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