Arid
DOI10.4209/aaqr.2015.08.0505
Source Apportionment of Submicron Particle Size Distribution and PM2.5 Composition during an Asian Dust Storm Period in Two Urban Atmospheres
Liang, Chi-Sung1; Yu, Tai-Yi2; Lin, Wen-Yinn1
通讯作者Lin, Wen-Yinn
来源期刊AEROSOL AND AIR QUALITY RESEARCH
ISSN1680-8584
EISSN2071-1409
出版年2015
卷号15期号:7页码:2609-2624
英文摘要

Asian dust storms (ADS), coming from deserts of China and Mongolia, have serious environmental impact on particulate matter (PM) and other pollutants in Taiwan. This study selected two urban sites, Taipei and Kaohsiung, to evaluate the influence of ADS on air quality. During the ADS periods, the hourly PM10 mass concentrations were 800 mu g m(-3) in Taipei and the 400 mu g m(-3) in Kaohsiung, which was three to five times higher than PM episodes during the non-ADS periods. By using the principal component analysis (PCA) manner, the potential sources, the dust storm contained, can be successfully identified during ADS periods. The other potential sources can be identified as vehicular emission and secondary organic aerosols from local area. There have been many studies conducted on the impact of ADS on airborne coarse particle concentration, but very few on fine particle concentration. This study focused on, using PCA for analysis and discussion, the impact of ADS on submicron particle size distribution. The results showed that there was no close relationship between the ADS and Aitken mode (30-100 nm or D(30-100)nm) or accumulation mode (from 0.1-1 mu m). However, it was found that strong correlation existed between the ADS and nucleation mode (10-30 nm or D(10-30)nm). In addition, it was found that nucleation mode appeared first, followed by an air plume of dust particles twelve (12) hours later. The nucleation component from the PCA could be used as predictors of arrival time for an ADS. Taking into account the effects of meteorological conditions and employing technique of backward trajectories, PCA can be utilized as a powerful tool to better identify the source of dust storms and provide accurate results.


英文关键词Dust storm Principal component analysis Aerosol size distribution
类型Article
语种英语
国家Taiwan
收录类别SCI-E
WOS记录号WOS:000369327100010
WOS关键词PRINCIPAL COMPONENT ANALYSIS ; CHEMICAL-COMPOSITION ; ULTRAFINE PARTICLES ; VEHICLE EMISSIONS ; COARSE PARTICLES ; SOUTHERN TAIWAN ; EAST-ASIA ; AEROSOLS ; TRANSPORT ; POLLUTION
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/185525
作者单位1.Natl Taipei Univ Technol, Inst Environm Engn & Management, Taipei 106, Taiwan;
2.Ming Chuan Univ, Dept Risk Management & Insurance, Taipei 111, Taiwan
推荐引用方式
GB/T 7714
Liang, Chi-Sung,Yu, Tai-Yi,Lin, Wen-Yinn. Source Apportionment of Submicron Particle Size Distribution and PM2.5 Composition during an Asian Dust Storm Period in Two Urban Atmospheres[J],2015,15(7):2609-2624.
APA Liang, Chi-Sung,Yu, Tai-Yi,&Lin, Wen-Yinn.(2015).Source Apportionment of Submicron Particle Size Distribution and PM2.5 Composition during an Asian Dust Storm Period in Two Urban Atmospheres.AEROSOL AND AIR QUALITY RESEARCH,15(7),2609-2624.
MLA Liang, Chi-Sung,et al."Source Apportionment of Submicron Particle Size Distribution and PM2.5 Composition during an Asian Dust Storm Period in Two Urban Atmospheres".AEROSOL AND AIR QUALITY RESEARCH 15.7(2015):2609-2624.
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