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Chemkar PM10: An extensive look at the local differences in chemical composition of PM10 in Flanders, Belgium

机译:Chemkar PM10:广泛研究比利时法兰德斯PM10的化学成分的局部差异

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摘要

The results of Chemkar PM10, the first large scale chemical characterisation project of PM10 in Flanders are presented. Between September 2006 and September 2007 a total of 365 PM10 samples were collected by sampling every sixth day at six different sites in Flanders (Belgium) varying in character from urban background to rural. Samples were analysed for a series of elements, elemental and organic carbon, ~(13)C/~(12)C- and~( 15)N/~(l4)N-isotopic ratios, and water-soluble ions. At three sites extra sampling was carried out to determine PAHs by means of a novel technique that uses sorption tubes consisting of polydimethylsiloxane (PDMS) foam, PDMS particles and a TENAX TA bed. Results showed that the most important fractions were secondary inorganic ions (nitrate, sulphate and ammonium): 41% (12.6 μg m~(-3)), organiCmatter: 20% (6.1 μgm~3), crustal matter: 14% (4.3 μgm~3), sea salt: 8% (2.4 μgm~(-3)) and elemental carbon: 4% (1.2 μgm~3). Although the general composition profile was rather similar for the six sites, substantial differences could be observed for some main components and for several trace metals such as chromium, copper, zinc, arsenic and lead. Although the average sum of the "PAH 16" was quite variable between the three sites (between 132 and 248 ng m~(-3)) the average sum of the "PAH 7" was between 7 and 9 ng m~3 for the three sites. The largest relative differences between sites were found for elemental carbon and crustal matter, thereby indicating that there is some potential for local measures to reduce the concentrations of particulate matter by a few μg m~(-3). Both for carbon and nitrogen isotopic ratios significant differences in time were observed. Isotopic differences in location could only be detected for carbon.
机译:介绍了法兰德斯地区第一个PM10大规模化学表征项目Chemkar PM10的结果。在2006年9月至2007年9月之间,每隔六天从比利时法兰德斯(Flanders)的六个不同地点取样,总共收集了365个PM10样品,其特征从城市背景到农村都有所不同。分析了样品中的一系列元素,元素和有机碳,〜(13)C /〜(12)C-和〜(15)N /〜(14)N同位素比率以及水溶性离子。在三个位置,通过一种新技术进行了额外的采样以确定PAH,该新技术使用的吸附管由聚二甲基硅氧烷(PDMS)泡沫,PDMS颗粒和TENAX TA床组成。结果表明,最重要的部分是次要无机离子(硝酸根,硫酸根和铵离子):41%(12.6μgm〜(-3)),有机物:20%(6.1μgm〜3),地壳物质:14%(4.3) μgm〜3),海盐:8%(2.4μgm〜(-3))和元素碳:4%(1.2μgm〜3)。尽管六个位置的总体成分分布非常相似,但在某些主要成分以及几种痕量金属(例如铬,铜,锌,砷和铅)上可以观察到实质性差异。尽管“ PAH 16”的平均总和在三个位点之间变化很大(介于132和248 ng m〜(-3)之间),但“ PAH 7”的平均总和在7和9 ng m〜3之间。三个站点。发现元素碳和地壳物质的位点之间最大的相对差异,从而表明有可能采取局部措施将颗粒物的浓度降低几μgm〜(-3)。对于碳和氮同位素比率,都观察到时间上的显着差异。只能检测到碳的同位素位置差异。

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  • 来源
    《Atmospheric environment》 |2011年第1期|p.108-116|共9页
  • 作者单位

    Flemish Environment Agency, Air Quality Networks, Kronenburgstraat 45, B-2000 Antwerpen, Belgium;

    Flemish Environment Agency, Air Quality Networks, Kronenburgstraat 45, B-2000 Antwerpen, Belgium;

    Flemish Environment Agency, Air Quality Networks, Kronenburgstraat 45, B-2000 Antwerpen, Belgium;

    Flemish Environment Agency, Air Quality Networks, Kronenburgstraat 45, B-2000 Antwerpen, Belgium;

    Micro and Trace Analysis Centre, Department of Chemistry, University of Antwerp, Campus Drie Eiken, Universiteitsplein 1, B-26/0 Antwerp, Belgium;

    Micro and Trace Analysis Centre, Department of Chemistry, University of Antwerp, Campus Drie Eiken, Universiteitsplein 1, B-26/0 Antwerp, Belgium;

    Micro and Trace Analysis Centre, Department of Chemistry, University of Antwerp, Campus Drie Eiken, Universiteitsplein 1, B-26/0 Antwerp, Belgium;

    Institute for Nuclear Sciences, Department of Analytical Chemistry, Ghent University, Proeftuinstraat 86, B-9000 Gent, Belgium;

    Institute for Nuclear Sciences, Department of Analytical Chemistry, Ghent University, Proeftuinstraat 86, B-9000 Gent, Belgium;

    European Commission Joint Research Centre, Institute for Reference Materials and Measurements, Retieseweg 111, B-2440 Geef, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PM10; EC/OC; secondary inorganic aerosol (SIA); elemental analysis; isotopic ratios; PAHs;

    机译:PM10;EC / OC;次生无机气溶胶(SIA);元素分析同位素比;多环芳烃;

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