Secondary aerosol formation through photochemical reactions estimated by using air quality monitoring data in Taipei City from 1994 to 2003

被引:66
作者
Chang, Shuenn-Chin [1 ]
Lee, Chung-Te [1 ]
机构
[1] Natl Cent Univ, Grad Inst Environm Engn, Jhongli 32001, Taiwan
关键词
air quality monitoring; aerosol supersite; ozone; photochemical activities; secondary aerosol;
D O I
10.1016/j.atmosenv.2007.01.040
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Analyses of diurnal patterns of PM10 in Taipei City have been performed in this study at different daily ozone maximum concentrations (O-3,O-max) from 1994 to 2003. In order to evaluate secondary aerosol formation at different ozone levels, CO was used as a tracer of primary aerosol, and O-3,O-max was used as an index of photochemical activity. Results show that when O-3,O-max exceeds 120 ppb, the highest photochemical formation of secondary aerosol can be found at 15:00 (local time). The produced secondary aerosol is estimated to contribute 30 mu g m(-3) (43%) of PM10 concentration, and about 77% of the estimated secondary PM10 is composed of PM2.5. The estimated maximum concentration of secondary aerosol occurs 2-3 h later than the maximum ozone concentration. As revealed in an O-3 episode, PM10 and PM2.5 vary consistently with O-3 at daytime, which suggests that they are mostly secondary aerosols produced from photochemical reactions. Data collected from Taipei aerosol supersite in 2002 indicates that for all O-3 levels, summertime PM2.5 is composed of 23%, 20%, 9%, and 7% of organic carbon, sulfate, nitrate, and elemental carbon, respectively. Aerosol number and volume size spectra are dominated by submicron particles either from pollution transport or photochemical reactions. Secondary PM10 concentrations show increasing tendencies for the time between 15:00 and 19:00 from 1994-1996 to 2001-2003. This reveals that the abatement of secondary PM10 becomes more important after pronounced primary PM10 reduction in a metropolis. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:4002 / 4017
页数:16
相关论文
共 28 条
[1]  
CHANG SC, 2006, ENV MONITORING ASSES
[2]   Ozone variations through vehicle emissions reductions based on air quality monitoring data in Taipei City, Taiwan, from 1994 to 2003 [J].
Chang, Shuenn-Chin ;
Lee, Chung-Te .
ATMOSPHERIC ENVIRONMENT, 2006, 40 (19) :3513-3526
[3]   Spatial and temporal variations of particulate precursor gases and photochemical reaction products during SJVAQS/AUSPEX ozone episodes [J].
Chow, JC ;
Watson, JG ;
Lowenthal, DH ;
Egami, RT ;
Solomon, PA ;
Thuillier, RH ;
Magliano, K ;
Ranzieri, A .
ATMOSPHERIC ENVIRONMENT, 1998, 32 (16) :2835-2844
[4]   A Lagrangian model with simple primary and secondary aerosol scheme 1:: comparison with UK PM10 data [J].
Emmerson, KM ;
MacKenzie, AR ;
Owen, SM ;
Evans, MJ ;
Shallcross, DE .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2004, 4 :2161-2170
[6]   Sources and processes affecting concentrations of PM10 and PM2.5 particulate matter in Birmingham (UK) [J].
Harrison, RM ;
Deacon, AR ;
Jones, MR ;
Appleby, RS .
ATMOSPHERIC ENVIRONMENT, 1997, 31 (24) :4103-4117
[7]   A model evaluation of coarse-mode nitrate heterogeneous formation on dust particles [J].
Hodzic, A. ;
Bessagnet, B. ;
Vautard, R. .
ATMOSPHERIC ENVIRONMENT, 2006, 40 (22) :4158-4171
[8]   Field evaluation of the differential TEOM monitor for continuous PM2.5 mass concentrations [J].
Jaques, PA ;
Ambs, JL ;
Grant, WL ;
Sioutas, C .
AEROSOL SCIENCE AND TECHNOLOGY, 2004, 38 :49-59
[9]   Source identification of Atlanta aerosol by positive matrix factorization [J].
Kim, E ;
Hopke, PK ;
Edgerton, ES .
JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION, 2003, 53 (06) :731-739
[10]   Aerosol characteristics from the Taiwan aerosol supersite in the Asian yellow-dust periods of 2002 [J].
Lee, CT ;
Chuang, MT ;
Chan, CC ;
Cheng, TJ ;
Huang, SL .
ATMOSPHERIC ENVIRONMENT, 2006, 40 (18) :3409-3418