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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Regional atmospheric pollutant transport mechanisms over the North China Plain driven by topography and planetary boundary layer processes
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Regional atmospheric pollutant transport mechanisms over the North China Plain driven by topography and planetary boundary layer processes

机译:地形和行星边界层工艺北方地区北方平原区域大气污染物机制

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摘要

Comprehensive measurements were conducted in winter 2018 and combined with RMPAS-Chem model simulations to analyze the regional transport mechanisms of atmospheric pollutants over the North China Plain. The instruments used consisted of four Vaisala CL51 ceilometers for planetary boundary layer (PBL) heights and aerosol backscatter profiles, two wind profilers, one radiosonde for the profiles of meteorological variables, and an instrumented King-Air 350 aircraft for the profiles of atmospheric pollutants and meteorological variables. Additionally, observations from Environmental Protection Bureau stations were also analyzed, including hourly concentrations of surface PM2.5, SO2, NO2, CO, and O-3. The results suggest that regional atmospheric pollutant transport is driven by a combination of topography and PBL processes. First, a mountain-induced vertical vortex forms over downwind regions; this elevates ground pollutants to form an elevated pollutant layer (EPL) at an altitude of 1.4-1.7 km. The EPL is then transported to Beijing via an enhanced southerly wind. Finally, the pollutants in the EPL are transported downward to the surface through PBL processes.
机译:综合测量在2018年冬季进行,并与RMPAS-CHEM模型模拟相结合,分析了华北平原大气污染物的区域运输机制。使用的仪器由四个Vaisala CL51 CeIlom计,用于行星边界层(PBL)高度和气溶胶反向散射型材,两个风剖面仪,一个用于气象变量的型材的无线电探测器,以及用于大气污染物的型材的仪表王 - 空气350飞机。气象变量。另外,还分析了环保局网站的观察,包括每小时浓度的表面PM2.5,SO2,NO2,CO和O-3。结果表明,区域大气污染物运输是由地形和PBL过程的组合驱动的。首先,山地诱导的垂直涡流形成在下风区域;这升高了地面污染物,在高度为1.4-1.7公里处形成升高的污染物层(EPL)。然后通过增强的南风风运输到北京的EPL。最后,通过PBL工艺向下向表面传送EPL中的污染物。

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