Source apportionments of PM2.5 organic carbon during the elevated pollution episodes in the Ordos region, Inner Mongolia, China

被引:0
作者
Reza Bashiri Khuzestani
James J. Schauer
Jing Shang
Tianqi Cai
Dongqing Fang
Yongjie Wei
Lulu Zhang
Yuanxun Zhang
机构
[1] University of Chinese Academy of Sciences,College of Resources and Environment
[2] Chinese Academy of Sciences,Huairou Eco
[3] University of Wisconsin-Madison,Environmental Observatory
[4] Chinese Research Academy of Environmental Sciences,Environmental Chemistry and Technology Program
[5] Chinese Academy of Sciences,China State Key Laboratory of Environmental Criteria and Risk Assessment & Environmental Standards Institute
[6] Chinese Academy of Sciences,CAS Center for Excellence in Regional Atmospheric Environment
来源
Environmental Science and Pollution Research | 2018年 / 25卷
关键词
Source apportionment; High-pollution episode; Positive matrix factorization (PMF); Ordos region; Hybrid trajectory models; Regional long-range transport;
D O I
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中图分类号
学科分类号
摘要
The Ordos region in the southwestern part of Inner Mongolia experiences frequent PM concentrations in excess of the national PM2.5 air quality standards. In order to determine the key sources of PM2.5 contributing to these pollution episodes, the main sources of PM2.5 OC during elevated PM episodes in the Inner Mongolia were analyzed and compared with non-polluted days. This will provide insight to the main sources of particulate matter pollution during the high-pollution episodes and the effective seasonal strategies to control sources of particulate matter during months and with the highest PM concentrations that need to be controlled. The PMF source contributions to OC demonstrated that the industrial/coal combustion (4762.77 ± 1061.54 versus 2726.49 ± 469.75 ng/m3; p < 0.001) and mobile source factors (4651.14 ± 681.82 versus 2605.55 ± 276.50 ng/m3; p value < 0.001) showed greater contributions to the elevated concentrations during the episode. The spatial analysis of secondary organic carbon (SOC) factors, regional biomass burning, and biogenic sources did not show significant difference in the pollution episodes and the non-polluted months. In addition, the bivariate polar plots and CWT maps of the industrial/coal combustion and mobile illustrated a regional long-range transport patterns from the external sources to the study area, however, adjacent areas were mostly controlling the contributions of these factors during the PM elevated episodes. The SOC sources, regional biomass burning, and biogenic sources illustrated a regional long-range transport with similar locations found during the elevated pollution episodes compared to the normal situations.
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页码:13159 / 13172
页数:13
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