Association between particulate matter and its chemical constituents of urban air pollution and daily mortality or morbidity in Beijing City

被引:0
|
作者
Pei Li
Jinyuan Xin
Yuesi Wang
Guoxing Li
Xiaochuan Pan
Shigong Wang
Mengtian Cheng
Tianxue Wen
Guangcheng Wang
Zirui Liu
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics
[2] Lanzhou University,Key Laboratory of Semi
[3] Unit 93501 of PLA,Arid Climate Change of Ministry of Education, College of Atmospheric Science
[4] Peking University Health Science Center,Department of Occupational and Environmental Health, School of Public Health
关键词
Air pollution; Chemical constituents; Mortality; Morbidity; Particulate matter; PM; Time series; Beijing;
D O I
暂无
中图分类号
学科分类号
摘要
Recent time series studies have indicated that daily mortality and morbidity are associated with particulate matters. However, about the relative effects and its seasonal patterns of fine particulate matter constituents is particularly limited in developing Asian countries. In this study, we examined the role of particulate matters and its key chemical components of fine particles on both mortality and morbidity in Beijing. We applied several overdispersed Poisson generalized nonlinear models, adjusting for time, day of week, holiday, temperature, and relative humidity, to investigate the association between risk of mortality or morbidity and particulate matters and its constituents in Beijing, China, for January 2005 through December 2009. Particles and several constituents were associated with multiple mortality or morbidity categories, especially on respiratory health. For a 3-day lag, the nonaccident mortality increased by 1.52, 0.19, 1.03, 0.56, 0.42, and 0.32 % for particulate matter (PM)2.5, PM10, K+, SO42−, Ca2+, and NO3− based on interquartile ranges of 36.00, 64.00, 0.41, 8.75, 1.43, and 2.24 μg/m3, respectively. The estimates of short-term effects for PM2.5 and its components in the cold season were 1 ~ 6 times higher than that in the full year on these health outcomes. Most of components had stronger adverse effects on human health in the heavy PM2.5 mass concentrations, especially for K+, NO3−, and SO42−. This analysis added to the growing body of evidence linking PM2.5 with mortality or morbidity and indicated that excess risks may vary among specific PM2.5 components. Combustion-related products, traffic sources, vegetative burning, and crustal component and resuspended road dust may play a key role in the associations between air pollution and public health in Beijing.
引用
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页码:358 / 368
页数:10
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