环境科学
渗透(HVAC)
污染物
空气污染
室内空气质量
污染
空气污染物
气溶胶
大气科学
环境工程
环境化学
水文学(农业)
气象学
地理
化学
生态学
地质学
岩土工程
生物
有机化学
工程类
作者
Wenwei Che,Alison T.Y. Li,H. Christopher Frey,Kimberly Tasha Jiayi Tang,Li Sun,Peng Wei,Md. Shakhaoat Hossain,Tilman Leo Hohenberger,King Wai Leung,Alexis K.H. Lau
出处
期刊:Indoor Air
[Wiley]
日期:2020-07-31
卷期号:31 (1): 170-187
被引量:29
摘要
School-age children are particularly susceptible to exposure to air pollutants. To quantify factors affecting children's exposure at school, indoor and outdoor microenvironmental air pollutant concentrations were measured at 32 selected primary and secondary schools in Hong Kong. Real-time PM10 , PM2.5 , NO2, and O3 concentrations were measured in 76 classrooms and 23 non-classrooms. Potential explanatory factors related to building characteristics, ventilation practice, and occupant activities were measured or recorded. Their relationship with indoor measured concentrations was examined using mixed linear regression models. Ten factors were significantly associated with indoor microenvironmental concentrations, together accounting for 74%, 61%, 46%, and 38% of variations observed for PM2.5 , PM10 , O3, and NO2 microenvironmental concentrations, respectively. Outdoor concentration is the single largest predictor for indoor concentrations. Infiltrated outdoor air pollution contributes to 90%, 70%, 75%, and 50% of PM2.5 , PM10 , O3, and NO2 microenvironmental concentrations, respectively, in classrooms during school hours. Interventions to reduce indoor microenvironmental concentrations can be prioritized in reducing ambient air pollution and infiltration of outdoor pollution. Infiltration factors derived from linear regression models provide useful information on outdoor infiltration and help address the gap in generalizable parameter values that can be used to predict school microenvironmental concentrations.
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