Exposure Assessment for Estimation of the Global Burden of Disease Attributable to Outdoor Air Pollution

空气污染 空气质量指数 人口 环境科学 东亚 估计 污染 地理 臭氧 化学输运模型 疾病负担 污染物 环境保护 气候学 环境卫生 自然地理学 气象学 中国 医学 生态学 管理 化学 有机化学 考古 经济 地质学 生物
作者
Michael Bräuer,Markus Amann,Rick Burnett,Aaron Cohen,Frank Dentener,Majid Ezzati,Sarah B. Henderson,Michał Krzyżanowski,Randall V. Martin,Rita Van Dingenen,Aaron van Donkelaar,George Thurston
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:46 (2): 652-660 被引量:745
标识
DOI:10.1021/es2025752
摘要

Ambient air pollution is associated with numerous adverse health impacts. Previous assessments of global attributable disease burden have been limited to urban areas or by coarse spatial resolution of concentration estimates. Recent developments in remote sensing, global chemical-transport models, and improvements in coverage of surface measurements facilitate virtually complete spatially resolved global air pollutant concentration estimates. We combined these data to generate global estimates of long-term average ambient concentrations of fine particles (PM2.5) and ozone at 0.1° × 0.1° spatial resolution for 1990 and 2005. In 2005, 89% of the world’s population lived in areas where the World Health Organization Air Quality Guideline of 10 μg/m3 PM2.5 (annual average) was exceeded. Globally, 32% of the population lived in areas exceeding the WHO Level 1 Interim Target of 35 μg/m3, driven by high proportions in East (76%) and South (26%) Asia. The highest seasonal ozone levels were found in North and Latin America, Europe, South and East Asia, and parts of Africa. Between 1990 and 2005 a 6% increase in global population-weighted PM2.5 and a 1% decrease in global population-weighted ozone concentrations was apparent, highlighted by increased concentrations in East, South, and Southeast Asia and decreases in North America and Europe. Combined with spatially resolved population distributions, these estimates expand the evaluation of the global health burden associated with outdoor air pollution.
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