Impact of transport of fine and ultrafine particles from open biomass burning on air quality during 2019 Bangkok haze episode

被引:0
|
作者
Racha Dejchanchaiwong [1 ,2 ]
Perapong Tekasakul [1 ,3 ]
Surajit Tekasakul [4 ]
Worradorn Phairuang [1 ,5 ]
Nobchonnee Nim [1 ,6 ]
Chaiyoth Sresawasd [1 ,6 ]
Kunchira Thongboon [7 ]
Thunyapat Thongyen [8 ]
Panwadee Suwattiga [9 ]
机构
[1] Air Pollution and Health Effect Research Center, Prince of Songkla University
[2] Department of Chemical Engineering, Faculty of Engineering, Prince of Songkla University
[3] Department of Mechanical Engineering, Faculty of Engineering, Prince of Songkla University
[4] Department of Chemistry, Faculty of Science, Prince of Songkla University
[5] Faculty of Environmental Management, Prince of Songkla University
[6] Energy System Research Institute, Prince of Songkla University
[7] Department of Environmental Engineering, Faculty of Engineering, Prince of Songkla University
[8] Department of Technology and Environmental Management, Faculty of environment, Kasetsart University
[9] Department of Agro-Industrial, Food and Environmental Technology, Faculty of Applied Science, King Mongkut's University of Technology North Bangkok
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中图分类号
X513 [粒状污染物];
学科分类号
0706 ; 070602 ;
摘要
Transboundary and domestic aerosol transport during 2018–2019 affecting Bangkok air quality has been investigated. Physicochemical characteristics of size-segregated ambient particles down to nano-particles collected during 2017 non-haze and 2018–2019 haze periods were analyzed. The average PM2.5concentrations at KU and KMUTNB sites in Bangkok, Thailand during the haze periods were about 4 times higher than in non-haze periods. The highest average organic carbon and elemental carbon concentrations were 4.6 ± 2.1 μg/m3and 1.0 ± 0.4 μg/m3, respectively, in PM0.5–1.0range at KU site. The values of OC/EC and charEC/soot-EC ratios in accumulation mode particles suggested the significant influence of biomass burning, while the nuclei and coarse mode particles were from mixed sources. PAH concentrations during 2018–2019 haze period at KU and KMUTNB were 3.4 ± 0.9 ng/m3and 1.8 ± 0.2 ng/m3, respectively. The PAH diagnostic ratio of PM2.5also suggested the main contributions were from biomass combustion. This is supported by the 48-hrs backward trajectory simulation. The higher PM2.5concentrations during 2018–2019 haze period are also associated with the meteorological conditions that induce thermal inversions and weak winds in the morning and evening. Average values of benzo(a)pyrene toxic equivalency quotient during haze period were about 3–6 times higher than during non-haze period. This should raise a concern of potential human health risk in Bangkok and vicinity exposing to fine and ultrafine particulate matters in addition to regular exposure to traffic emission.
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页码:149 / 161
页数:13
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