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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Seasonal Variation in Water-Soluble Ions in Airborne Particulate Deposition in the Suburban Nanjing Area, Yangtze River Delta, China, During Haze Days and Normal Days
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Seasonal Variation in Water-Soluble Ions in Airborne Particulate Deposition in the Suburban Nanjing Area, Yangtze River Delta, China, During Haze Days and Normal Days

机译:在南京地区郊区南京地区空气颗粒沉积中水溶性离子的季节变化,在阴霾天和正常日期

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摘要

To investigate the seasonal variation and characterization of water-soluble ions (WSIs) present in airborne particle deposition (APD) during Haze Days (visibility = 7.5 km) and Normal Days (visibility 7.5 km) in suburban Nanjing area, 151 filter samples were collected from 18 May 2013 to 26 May 2014. Ten different WSIs from the samples were determined by Ion Chromatography. The results indicated that secondary WSIs (NH4+, NO3-, and SO42-) were the main ions in the WSIs, averaging 17.2, 18.5, and 17.1 mu g/m(3), respectively, and accounting respectively 20.9, 22.5, and 20.8% of the total WSIs. On Haze Days, the concentration of WSIs increased dramatically in fine size (particle size 2.1 mu m), especially for NH4+, NO3-, and SO42- (increased by 52.6, 71.3, and 73.1%, respectively), whereas the concentrations of WSIs increased slowly in coarse size (2.1 mu m particle size 10 mu m), in which NH4+, NO3-, and SO42- increased by 14.7, 27.2, and 54.5%, respectively. According to the backward trajectories and the principal component analysis analysis, Nanjing APD were mainly derived from the soil dust in northern China (35%) in the spring, from ocean air masses (61 and 55%) in the summer and the autumn, and from local air masses (73%) in the winter. On summer Haze Days, secondary components in PM2.1 consisted mainly of (NH4)(2)SO4 and NH4NO3, whereas secondary components in PM2.1-10 consisted mainly of (NH4)(2)SO4, NH4Cl, and NH4NO3. The increasing concentrations of secondary components increase the light extinction coefficients of aerosol on winter and autumn Haze Days. The concentrations of WSIs in fine size rose sharply on Haze Days, leading the visibility to exponential decline. Differently, the concentrations of WSIs in coarse size were not the main cause in the change of the visibility.
机译:探讨丘泽天期间空气颗粒沉积(APD)中存在的水溶性离子(WSIS)的季节变化和表征,在南京区郊区的正常天(可见性和GT; 7.5 km),151从2013年5月18日至2014年5月26日收集过滤器样品。通过离子色谱法测定来自样品的十种不同的WSI。结果表明,二级WSIS(NH4 +,NO3-和SO42-)是WSI中的主要离子,分别平均17.2,18.5和17.1μg/ m(3),分别为20.9,22.5和20.8总WSI的百分比。在阴霾天,WSI的浓度在细小的细粒(粒度<2.1μm)中显着增加,特别是对于NH 4 +,NO 3和SO42-(分别增加52.6,71.3和73.1%),而浓度WSI在粗糙的大小(2.1μm&10μm)中缓慢增加,其中NH 4 +,NO 3和SO42分别增加14.7,27.2和54.5%。根据落后的轨迹和主要成分分析分析,南京APD主要来自中国北方的土壤粉尘(35%),夏季和秋季海洋空气群众(61和55%),在冬季的当地风格(73%)。在夏季阴霾日,PM2.1中的二级组分主要由(NH4)(2)SO4和NH 4 NO 3组成,而PM2.1-10中的二级组分主要由(NH4)(2)SO 4,NH4Cl和NH 4 NH 4。越来越多的次要组分增加了冬季和秋季阴霾天气溶胶的光消光系数。在雾霾天浓厚的WSI浓度急剧上升,导致指数下降的能见度。不同,WSI的浓度在粗糙的大小中不是改变可见性的主要原因。

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    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

    Nanjing Univ Informat Sci &

    Technol Collaborat Innovat Ctr Forecast &

    Evaluat Meteoro Key Lab;

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  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
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