环境科学
起飞
空气质量指数
跑道
空气污染
烟灰
污染
气象学
气团(太阳能)
污染物
起飞和着陆
大气科学
拉格朗日
地理
燃烧
工程类
考古
有机化学
化学
航空航天工程
生态学
地质学
物理
边界层
生物
数学物理
作者
Alessandro Di Menno di Bucchianico,Giorgio Cattani,Alessandra Gaeta,Anna Maria Caricchia,F. Troiano,Roberto Sozzi,Andrea Bolignano,Fabrizio Sacco,Sesto Damizia,Silvia Barberini,Roberta Caleprico,Tina Fabozzi,Carla Ancona,Laura Ancona,Giulia Cesaroni,Francesco Forastiere,Gian Paolo Gobbi,Francesca Costabile,F. Angelini,Francesca Barnaba
出处
期刊:PubMed
[National Institutes of Health]
日期:2016-06-16
卷期号:38 (3-4): 244-53
被引量:4
摘要
OBJECTIVES: to assess air pollution spatial and temporal variability in the urban area nearby the Ciampino International Airport (Rome) and to investigate the airport-related emissions contribute. DESIGN AND SETTING: the study domain was a 64 km2 area around the airport. Two fifteen-day monitoring campaigns (late spring, winter) were carried out. Results were evaluated using several runs outputs of an airport-related sources Lagrangian particle model and a photochemical model (the Flexible Air quality Regional Model, FARM). MAIN OUTCOME MEASURES: both standard and high time resolution air pollutant concentrations measurements: CO, NO, NO2, C6H6, mass and number concentration of several PM fractions. 46 fixed points (spread over the study area) of NO2 and volatile organic compounds concentrations (fifteen days averages); deterministic models outputs. RESULTS: standard time resolution measurements, as well as model outputs, showed the airport contribution to air pollution levels being little compared to the main source in the area (i.e. vehicular traffic). However, using high time resolution measurements, peaks of particles associated with aircraft takeoff (total number concentration and soot mass concentration), and landing (coarse mass concentration) were observed, when the site measurement was downwind to the runway. CONCLUSIONS: the frequently observed transient spikes associated with aircraft movements could lead to a not negligible contribute to ultrafine, soot and coarse particles exposure of people living around the airport. Such contribute and its spatial and temporal variability should be investigated when assessing the airports air quality impact.
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