Light scattering by fine particles during the Pittsburgh Air Quality Study: measurements and modeling

被引:43
作者
Cabada, JC [1 ]
Khlystov, A
Wittig, AE
Pilinis, C
Pandis, SN
机构
[1] Carnegie Mellon Univ, Dept Chem Engn, Pittsburgh, PA 15213 USA
[2] Carnegie Mellon Univ, Dept Engn & Publ Policy, Pittsburgh, PA 15213 USA
[3] Univ Aegean, Dept Environm Studies, GR-81100 Mitilini, Greece
关键词
atmospheric aerosols; optical properties; Pittsburgh Air Quality Study;
D O I
10.1029/2003JD004155
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
[1] Light scattering by fine particulate matter was measured during the Pittsburgh Air Quality Study (PAQS) as close to ambient conditions as possible. Several approaches are used for the theoretical calculation of the scattering coefficient and the results are compared to the direct measurements. The first approach uses ambient high time and daily resolved PM2.5 composition concentrations to estimate the scattering coefficient assuming that the aerosol is an external mixture. The second approach uses a thermodynamic model and Mie theory to predict the scattering coefficient of aerosols from daily size composition distributions. The third approach introduces high time and daily resolved ambient aerosol water concentrations and concentrations of sulfate, nitrate, organic material, and soil with fixed scattering efficiencies. During the summer the first two approaches underestimate the measured scattering coefficient by around 20%. Agreement within experimental error is obtained between the measured scattering coefficient and the model, incorporating measured water aerosol concentrations. During the winter the first two approaches tend to overpredict the measured scattering by around 15%. This overprediction is weakly correlated to the organic mass. The modeling approaches suggest that sulfate and the associated water contribute 65 - 73% to the scattering coefficient during the summer, with organic material contributing 25 - 30%. During the winter, sulfate accounts for 35 - 43%, nitrate accounts for 24 - 32%, and organic material accounts for 30 - 40% of the scattering coefficient.
引用
收藏
页码:D16S031 / 13
页数:14
相关论文
共 65 条
[1]   Prediction of multicomponent inorganic atmospheric aerosol behavior [J].
Ansari, AS ;
Pandis, SN .
ATMOSPHERIC ENVIRONMENT, 1999, 33 (05) :745-757
[2]   Water absorption by secondary organic aerosol and its effect on inorganic aerosol behavior [J].
Ansari, AS ;
Pandis, SN .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (01) :71-77
[3]   Estimating the secondary organic aerosol contribution to PM2.5 using the EC tracer method [J].
Cabada, JC ;
Pandis, SN ;
Subramanian, R ;
Robinson, AL ;
Polidori, A ;
Turpin, B .
AEROSOL SCIENCE AND TECHNOLOGY, 2004, 38 :140-155
[4]   Mass size distributions and size resolved chemical composition of fine particulate matter at the Pittsburgh supersite [J].
Cabada, JC ;
Rees, S ;
Takahama, S ;
Khlystov, A ;
Pandis, SN ;
Davidson, CI ;
Robinson, AL .
ATMOSPHERIC ENVIRONMENT, 2004, 38 (20) :3127-3141
[5]   CLIMATE FORCING BY ANTHROPOGENIC AEROSOLS [J].
CHARLSON, RJ ;
SCHWARTZ, SE ;
HALES, JM ;
CESS, RD ;
COAKLEY, JA ;
HANSEN, JE ;
HOFMANN, DJ .
SCIENCE, 1992, 255 (5043) :423-430
[6]   Deliquescence and hygroscopic growth of mixed inorganic-organic atmospheric aerosol [J].
Cruz, CN ;
Pandis, SN .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2000, 34 (20) :4313-4319
[7]   The effect of organic coatings on the cloud condensation nuclei activation of inorganic atmospheric aerosol [J].
Cruz, CN ;
Pandis, SN .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1998, 103 (D11) :13111-13123
[8]   EXAMINATION OF THE EFFECTS OF SULFATE ACIDITY AND RELATIVE-HUMIDITY ON LIGHT-SCATTERING AT SHENANDOAH-NATIONAL-PARK [J].
GEBHART, KA ;
MALM, WC ;
DAY, D .
ATMOSPHERIC ENVIRONMENT, 1994, 28 (05) :841-849
[9]   Estimates of particle hygroscopicity during the Southeastern Aerosol and Visibility Study [J].
Hand, JL ;
Ames, RB ;
Kreidenweis, SM ;
Day, DE ;
Malm, WC .
JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION, 2000, 50 (05) :677-685
[10]   A THEORETICAL-STUDY OF THE EFFECT OF RELATIVE-HUMIDITY ON LIGHT-SCATTERING BY TROPOSPHERIC AEROSOLS [J].
HEGG, D ;
LARSON, T ;
YUEN, PF .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1993, 98 (D10) :18435-18439