Size distribution and estimated optical properties of carbonate, water soluble organic carbon, and sulfate in aerosols at a remote high altitude sitein western China

Citation
Sm. Li et al., Size distribution and estimated optical properties of carbonate, water soluble organic carbon, and sulfate in aerosols at a remote high altitude sitein western China, GEOPHYS R L, 27(8), 2000, pp. 1107-1110
Citations number
18
Categorie Soggetti
Earth Sciences
Journal title
GEOPHYSICAL RESEARCH LETTERS
ISSN journal
00948276 → ACNP
Volume
27
Issue
8
Year of publication
2000
Pages
1107 - 1110
Database
ISI
SICI code
0094-8276(20000415)27:8<1107:SDAEOP>2.0.ZU;2-W
Abstract
Measurements at the GAW station in western China reveal the levels and size distributions of chemical components in aerosols. The results indicate sim ilarly high levels of three components, water-soluble organic carbon (WSOC) , Ca2++CO3= and NH4++SO4=. Both WSOC and SO4= show a dominant accumulation mode, with a geometric mean mode diameter D-g of 0.41 and 0.34 mu m and geo metric standard deviation sigma(sg) of 0.31 and 0.33, respectively. This mo de makes up >70% of the total mass of both species. In comparison, Ca2+ and CO3= show a prominent coarse mode with D-g of 2.98 and 1.76 mu m and sigma (sg) of 0.29 and 0.22, respectively, that accounts for >60% of the mass. Ba sed on these characteristics, estimates of the volume scatter coefficient b eta, direct back scatter coefficient beta(pi) and mass scattering efficienc y phi for each component were made, assuming external mixing and optical an d growth characteristics of corresponding pure chemical compounds. The resu lts show that NH4++SO4= has the largest beta, beta(pi) and phi (median 1760 x10(-8) m(-1), 79x10(-8) m(-1) sr(-1), and 6.9 m(2) g(-1), respectively). I t is followed by WSOC with 1470x10(-8) m(-1), 30x10(-8) m(-1) sr(-1), and 5 .3 m(2) g(-1) for beta, beta(pi), and phi, respectively. Ca2++CO3= has only about 10% of the beta and phi values but 20% of the beta(pi) of NH4++SO4= respectively. For both NH4++SO4= and WSOC, the mass scattering efficiency p hi is inversely related to their D-g between the size range of 0.2-0.45 mu m.