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Size-resolved aerosol composition at an urban and a rural site in the Po Valley in summertime: implications for secondary aerosol formation

机译:在夏季的城市和农村地区的城市和农村遗址的大小解决的气溶胶组成:对二次气溶胶形成的影响

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摘要

The aerosol size-segregated chemical composition was analyzed at an urban (Bologna) and a rural (San Pietro Capofiume) site in the Po Valley, Italy, during June and July 2012, by ion-chromatography (major water-soluble ions and organic acids) and evolved gas analysis (total and water-soluble carbon), to investigate sources and mechanisms of secondary aerosol formation during the summer. A significant enhancement of secondary organic and inorganic aerosol mass was observed under anticyclonic conditions with recirculation of planetary boundary layer air but with substantial differences between the urban and the rural site. The data analysis, including a principal component analysis (PCA) on the size-resolved dataset of chemical concentrations, indicated that the photochemical oxidation of inorganic and organic gaseous precursors was an important mechanism of secondary aerosol formation at both sites. In addition, at the rural site a second formation process, explaining the largest fraction (22 %) of the total variance, was active at nighttime, especially under stagnant conditions. Nocturnal chemistry in the rural Po Valley was associated with the formation of ammonium nitrate in large accumulation-mode (0.42-1.2 μm) aerosols favored by local thermodynamic conditions (higher relative humidity and lower temperature compared to the urban site). Nocturnal concentrations of fine nitrate were, in fact, on average 5 times higher at the rural site than in Bologna. The water uptake by this highly hygroscopic compound under high RH conditions provided the medium for increased nocturnal aerosol uptake of water-soluble organic gases and possibly also for aqueous chemistry, as revealed by the shifting of peak concentrations of secondary compounds (water-soluble organic carbon (WSOC) and sulfate) toward the large accumulation mode (0.42-1.2 μm). Contrarily, the diurnal production of WSOC (proxy for secondary organic aerosol) by photochemistry was similar at the two sites but most
机译:通过离子色谱法(主要水溶性离子和有机酸,在意大利的城市(博洛尼亚)和农村(San Pietro Capofiume)和农村(San Pietro Capofiume)网站上分析了气溶胶尺寸隔离的化学成分。 )和进化的气体分析(总和水溶性碳),研究夏季次级气溶胶形成的源和机制。在反缠绕条件下观察到二次有机和无机气溶胶质量的显着提高,并在城市和农村地区的行星边界层空气的再循环,但在城市和农村遗址之间存在显着差异。数据分析包括化学浓度的尺寸分辨数据集的主要成分分析(PCA),表明无机和有机气态前体的光化学氧化是两个位点的二次气溶胶形成的重要机制。此外,在农村现场,第二个形成过程,解释总方差的最大级分(22%),在夜间活跃,特别是在停滞条件下。农村Po谷的夜间化学与季累积 - 硝酸铵(0.42-1.2μm)气溶胶的形成有关,局部热力学条件(与城市网站相比较高的相对湿度和较低的温度)。事实上,夜间浓度的细硝酸盐在农村遗址平均比博洛尼亚更高的5倍。在高RH条件下通过这种高湿镜下化合物的水分提供了介质用于增加水溶性有机气体的夜间气溶胶吸收,并且可能还用于含水化学,如二级化合物的峰值浓度的变化所揭示的(水溶性有机碳(WSOC)和硫酸盐)朝向大的积聚模式(0.42-1.2μm)。相反,光化学的WSOC(二次有机气溶胶代理)的日本产量在两个地点相似,但大多数

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  • 来源
    《Atmospheric chemistry and physics》 |2016年第1期|共19页
  • 作者单位

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Leibniz-Institut für Troposph?renforschung (TROPOS) Leipzig 04318 Germany;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Leibniz-Institut für Troposph?renforschung (TROPOS) Leipzig 04318 Germany;

    Leibniz-Institut für Troposph?renforschung (TROPOS) Leipzig 04318 Germany;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Environmental Science and Engineering Gillings School of Global Public Health University of North Carolina at Chapel Hill NC 27599-7431 USA;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Rome 00133 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

    Institute for Atmospheric Sciences and Climate (ISAC) National Research Council (CNR) Bologna 40129 Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

    Size-resolved; aerosol; composition;

    机译:尺寸分辨;气溶胶;组成;

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