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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Vertical Characterization of Aerosol Particle Composition in Beijing, China: Insights From 3-Month Measurements With Two Aerosol Mass Spectrometers
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Vertical Characterization of Aerosol Particle Composition in Beijing, China: Insights From 3-Month Measurements With Two Aerosol Mass Spectrometers

机译:垂直表征气溶胶粒子成分在北京,中国:见解3个月测量两个气溶胶质量光谱仪

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摘要

Despite extensive studies for characterization of aerosol chemistry near ground level, long-term vertical characterization of aerosol particle composition in Beijing is very limited. In this work, non-refractory submicron aerosol (NR-PM1) species were simultaneously measured at ground level and 260 m on a meteorological tower from 14 October 2014 to 18 January 2015 in Beijing using two aerosol mass spectrometers. Our results showed overall lower concentrations of NR-PM1 at 260mby 2-36 than ground level in both heating and non-heating seasons, and also larger vertical gradients during clean periods than polluted episodes. The vertical ratios and correlations of aerosol species between ground level and 260 m presented higher values in daytime and lower ones at nighttime mainly due to the influences of planetary boundary layer and local source emissions, respectively. Nitrate showed ubiquitously higher ratio of 260 mto ground (ratio_(260m/ground)) than sulfate due to a higher formation potential from gas-particle partitioning and heterogeneous reactions at higher heights. A detailed analysis of vertical evolution showed relatively stable ratios_(260m/ground) for secondary aerosol species during the early formation stage of haze episodes, which decreased simultaneously along with mixing layer height during the later severely polluted periods with NR-PM_1 concentration above 150 μg/m~3. Our results demonstrated that the evolution of vertical differences in megacities is subject to the influences from both physical (e.g., regional transport, mountain-valley winds, inversions of temperature and relative humidity, and mixing layer height) and chemical processes (e.g., gas-particle partitioning and aqueous-phase processing).
机译:尽管广泛的研究的特征气溶胶化学在地面附近,长期的垂直表征气溶胶粒子作文在北京非常有限。工作,non-refractory亚微米气溶胶(NR-PM1)物种的同时测量水平和260米气象塔从142014年10月到2015年1月18日在北京使用两个气溶胶质谱仪。显示整体NR-PM1浓度下降260年mby 2% - -36%比地面加热和菌数的季节,还有更大的垂直梯度比污染干净的时期集。气溶胶物种在地面和260之间提出了较高的值在白天,较低的在夜间主要原因的影响行星边界层和本地源分别排放。无所不在地更高比例的260 mto地面(ratio_(260米/地))比硫酸盐由于高形成潜在的特点分区和异构反应更高的高度。进化显示相对稳定ratios_次生气溶胶(260米/地面)物种在阴霾的早期形成阶段集,同时减少在后来的混合层高度与NR-PM_1严重污染时期浓度超过150μg / m ~ 3。表明垂直的进化大城市的差异的从物理(例如,区域的影响交通、山谷风、反演温度和相对湿度和混合层高度)和化学过程(如特点分区和水相处理)。

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