Implications of seasonal control of PM2.5-bound PAHs: An integrated approach for source apportionment, source region identification and health risk assessment

被引:70
作者
Chao, Sihong [1 ]
Liu, Jianwei [1 ]
Chen, Yanjiao [1 ]
Cao, Hongbin [1 ]
Zhang, Aichen [1 ]
机构
[1] Beijing Normal Univ, Fac Geog Sci, Beijing 100875, Peoples R China
基金
中国国家自然科学基金;
关键词
PAHs; Seasonal variation; Positive matrix factorization; Source-attributed cancer risk; Source region; POLYCYCLIC AROMATIC-HYDROCARBONS; LUNG-CANCER RISK; RESIDENTIAL COAL COMBUSTION; PARTICULATE MATTER; URBAN ATMOSPHERE; EMISSION CONTROL; PM2.5; CHINA; SHANGHAI; EXPOSURE;
D O I
10.1016/j.envpol.2018.12.074
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
PM2.5-bound PAHs are ubiquitous in urban atmospheres and are characterized as carcinogenic, teratogenic and mutagenic upon inhalation. A total of 218 daily PM2.5 samples were collected during one year in the urban district of Beijing, China. Analysis showed that the annual mean concentration of total PAHs (TPAHs) was 66.2 ng/m(3), with benzo(a)pyrene (BaP) accounting for 12.4%. High-molecular-weight (HMW, 4-6 rings) PAHs were the dominant components. Seasonal TPAH concentrations decreased in the order of heating season (156 ng/m(3)) > autumn (20.4 ng/m(3)) > spring (16.0 ng/m(3)) > summer (12.5 ng/m3) and were related to meteorological conditions and source emission intensity. The source-attributed mass contribution and source regions of three sources (i.e., (1) vehicle emissions; (2) coal combustion; and (3) petroleum volatilization, natural gas and biomass combustion) were identified by integrating the positive matrix factorization (PMF), potential source contribution function (PSCF) and conditional probability function (CPF). Vehicle emissions contributed the most mass (54.6%), followed by coal combustion (29.8%), on an annual basis. Combined with actual regional emissions, vehicle emissions were mainly derived from local sources, while coal combustion mainly came from regional transport from surrounding areas. Vehicle emissions and coal combustion have much higher mass contributions in the heating season. The source-attributed cancer risk was further evaluated based on source mass contribution and inhalation unit risk. Vehicle emissions contributed the largest risk (2.8 x 10(-6), accounting for 71%) as a result of 30 years of exposure for local residents, exceeding the acceptable level (10-6). The heating season showed the most risk, especially in response to vehicle emissions and coal combustion. Overall, the source-attributed cancer risk was regarded as the better index for the development of a control strategy of PM2.5-bound PAHs for protecting residents. Based on this index, priority control sources in each season were identified to supply a more effective management solution. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:685 / 695
页数:11
相关论文
共 81 条
[1]   Polycyclic aromatic hydrocarbon derivatives in airborne particulate matter: sources, analysis and toxicity [J].
Abbas, Imane ;
Badran, Ghidaa ;
Verdin, Anthony ;
Ledoux, Frederic ;
Roumie, Mohamed ;
Courcot, Dominique ;
Garcon, Guillaume .
ENVIRONMENTAL CHEMISTRY LETTERS, 2018, 16 (02) :439-475
[2]  
[Anonymous], 2002, Polycyclic Organic Matter
[3]   Lung cancer risk after exposure to polycyclic aromatic hydrocarbons: A review and meta-analysis [J].
Armstrong, B ;
Hutchinson, E ;
Unwin, J ;
Fletcher, T .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2004, 112 (09) :970-978
[4]   Volatilization and oxidative artifacts of PM bound PAHs collected at low volume sampling (1): Laboratory and field evaluation [J].
Balducci, Catia ;
Cecinato, Angelo ;
Paolini, Valerio ;
Guerriero, Ettore ;
Perilli, Mattia ;
Romagnoli, Paola ;
Tortorella, Carmela ;
Iacobellis, Silvana ;
Giove, Aldo ;
Febo, Antonio .
CHEMOSPHERE, 2018, 200 :106-115
[5]  
BMBS Beijing Municipal Bureau of Statistics, 2017, BEIJ STAT YB 2016
[6]   Combustion of coal, bagasse and blends thereof Part II: Speciation of PAH emissions [J].
Bragato, Marcia ;
Joshi, Kulbhushan ;
Carlson, Joel B. ;
Tenorio, Jorge A. S. ;
Levendis, Yiannis A. .
FUEL, 2012, 96 (01) :51-58
[7]   Urbanization-related changes in soil PAHs and potential health risks of emission sources in a township in Southern Jiangsu, China [J].
Cao, Hongbin ;
Chao, Sihong ;
Qiao, Li ;
Jiang, Yanxue ;
Zeng, Xiancai ;
Fan, Xiaoting .
SCIENCE OF THE TOTAL ENVIRONMENT, 2017, 575 :692-700
[8]   Diurnal variations of atmospheric polycyclic aromatic hydrocarbons (PAHs) during three sequent winter haze episodes in Beijing, China [J].
Cao, Rong ;
Zhang, Haijun ;
Geng, Ningbo ;
Fu, Qiang ;
Teng, Man ;
Zou, Lili ;
Gao, Yuan ;
Chen, Jiping .
SCIENCE OF THE TOTAL ENVIRONMENT, 2018, 625 :1486-1493
[9]   Ambient PM2.5-bound polycyclic aromatic hydrocarbons (PAHs) in Changhua County, central Taiwan: Seasonal variation, source apportionment and cancer risk assessment [J].
Chen, Yu-Cheng ;
Chiang, Hung-Che ;
Hsu, Chin Yu ;
Yang, Tzu-Ting ;
Lin, Tzu-Yu ;
Chen, Mu-Jean ;
Chen, Nai-Tzu ;
Wu, Yuh-Shen .
ENVIRONMENTAL POLLUTION, 2016, 218 :372-382
[10]   Polycyclic aromatic hydrocarbons assessment in the sediments of the Porto Torres Harbor (Northern Sardinia, Italy) [J].
De Luca, G ;
Furesi, A ;
Leardi, R ;
Micera, G ;
Panzanelli, A ;
Piu, PC ;
Sanna, G .
MARINE CHEMISTRY, 2004, 86 (1-2) :15-32