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Characterization of aircraft emissions and air quality impacts of an international airport

机译:国际机场的飞机排放和空气质量影响的特征

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Beijing Capital International Airport (ZBAA) is the world's second busiest airport. In this study, the emissions of air pollutants from aircraft and other sources at ZBAA in 2015 were estimated using an improved method, which considered the mixing layer height calculated based on aircraft meteorological data relay (AMDAR), instead of using the height (915 m) recommended by ICAO. The yearly emissions of NOx, CO, VOCs, SO2, and PM2.5 at the airport were 8.76 x 10(3), 4.43 x 10(3), 5.43 x 10(2), 4.80 x 10(2), and 1.49 x 10(2) ton/year, respectively. The spatial-temporal distribution of aircraft emissions was systematically analyzed to understand the emission characteristics of aircraft. The results indicated that NO x was mainly emitted during the take-off and climb phases, accounting for 20.5% and 55.5% of the total emissions. CO and HC were mainly emitted during the taxi phase, accounting for 91.6% and 92.2% of the total emissions. Because the mixing layer height was high in summer, the emissions of aircraft were at the highest level throughout the year. Based on the detailed emissions inventory, four seasons simulation using WRF-CMAQmodel was performed over the domain surrounding the airport. The results indicated that the contribution to PM2.5 was relatively high in winter; the average impact was about 1.15 mu g/m(3) within a radius of 1 km around the airport. Meanwhile, the near surroundings and southwest areas of the airport are the most sensitive to PM2.5. (C)2018 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:北京首都国际机场(ZBAA)是世界上第二繁忙的机场。在这项研究中,使用一种改进方法估计了2015年ZBAA的飞机和其他来源的空气污染物排放,这考虑了基于飞机气象数据继电器(AMDAR)计算的混合层高度而不是使用高度(915米)国际民航组织推荐。机场NOx,CO,VOCS,SO2和PM2.5的年度排放为8.76 x 10(3),4.43 x 10(3),5.43 x 10(2),4.80 x 10(2)和1.49 X 10(2)吨/年。系统地分析了飞机排放的空间分布,以了解飞机的排放特性。结果表明,在起飞和攀登阶段,没有X主要发出,占总排放量的20.5%和55.5%。 CO和HC主要在出租车阶段排放,占总排放量的91.6%和92.2%。由于夏季搅拌层高度高,因此飞机排放量在全年的最高水平。根据详细的排放库存,使用WRF-CMAQModel的四季仿真在机场周围的域中进行。结果表明,冬季对PM2.5的贡献相对较高;机场周边地区的半径约为1.15 mu g / m(3)。与此同时,机场附近的周围和西南地区对PM2.5最敏感。 (c)2018中国科学院生态环境科学研究中心。 elsevier b.v出版。

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