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首页> 外文期刊>Journal of the Air & Waste Management Association >Relative roles of emissions and meteorology in the diurnal pattern of urban PM_(10): Analysis of the daylight saving time effect
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Relative roles of emissions and meteorology in the diurnal pattern of urban PM_(10): Analysis of the daylight saving time effect

机译:排放和气象在城市PM_(10)日模式中的相对作用:夏令时效应分析

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摘要

Daylight saving time (DST) is a common practice in many countries, in which Official Time (OT) is abruptly shifted 1 hour with respect to solar time on two occasions every year (in fall and spring). All anthropogenic emitting processes tied to OT, like job and school commuting traffic, abruptly change in this moment their timing with respect to solar time, inducing a sudden shift between emissions and the meteorological factors that control the dispersion and transport of air pollutants. Analyzing 13 years of hourly particulate matter (PM10) concentrations measured in Santiago, Chile, we demonstrate that the DST practice has observable nontrivial effects in the PM10 diurnal cycle. The clearest impact is in the morning peak of'PM10 during the fall DST change, which occurs later and has on average a significant smaller magnitude in the days after the DST change as compared to the days before it. This decrease in magnitude is most remarkable because it occurs in a period of the year when overall PM10 concentrations increase due to generally worsening of the dispersion conditions. Results are shown for seven monitoring stations around the city, and for the fall and spring DST changes. They show clearly the interplay of emissions and meteorology in conditioning urban air pollution problems, highlighting the role of the morning and evening transitions of the atmospheric boundary layer in shaping the diurnal pattern of urban air pollutant concentrations.
机译:夏令时(DST)在许多国家/地区很普遍,每年两次(秋季和春季),相对于太阳时间,官方时间(OT)会突然偏移1小时。与工作相关的所有人为排放过程,例如工作和学校通勤交通,都在此刻突然改变其相对于太阳时间的时间,从而导致排放与控制空气污染物扩散和传播的气象因素之间突然转变。分析了在智利圣地亚哥测量的13年每小时的颗粒物(PM10)浓度,我们证明了DST的做法在PM10的昼夜周期中具有可观察到的重要作用。最明显的影响是秋季DST更改期间'PM10的早晨峰值,该峰值发生较晚,并且与DST更改之前的几天相比,平均而言幅度显着较小。幅度下降最为显着,因为它发生在一年中,由于分散条件普遍恶化,导致PM10总体浓度升高。显示了城市中七个监视站的结果以及夏令时的秋季和春季变化。它们清楚地显示了排放物和气象学在解决城市空气污染问题中的相互作用,突出了大气边界层的早晚过渡在塑造城市空气污染物浓度的日变化模式中的作用。

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