Abst'/> Assessment of light extinction at a European polluted urban area during wintertime: Impact of PM_1 composition and sources
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Assessment of light extinction at a European polluted urban area during wintertime: Impact of PM_1 composition and sources

机译:评估欧洲一个受污染的城市地区冬季的消光:PM_1成分和来源的影响

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摘要

AbstractIn this paper, results from receptor modelling performed on a well-characterised PM1dataset were combined to chemical light extinction data (bext) with the aim of assessing the impact of different PM1components and sources on light extinction and visibility at a European polluted urban area. It is noteworthy that, at the state of the art, there are still very few papers estimating the impact of different emission sources on light extinction as we present here, although being among the major environmental challenges at many polluted areas. Following the concept of the well-known IMPROVE algorithm, here a tailored site-specific approach (recently developed by our group) was applied to assess chemical light extinction due to PM1components and major sources.PM1samples collected separately during daytime and nighttime at the urban area of Milan (Italy) were chemically characterised for elements, major ions, elemental and organic carbon, and levoglucosan. Chemical light extinction was estimated and results showed that at the investigated urban site it is heavily impacted by ammonium nitrate and organic matter. Receptor modelling (i.e. Positive Matrix Factorization, EPA-PMF 5.0) was effective to obtain source apportionment; the most reliable solution was found with 7 factors which were tentatively assigned to nitrates, sulphates, wood burning, traffic, industry, fine dust, and a Pb-rich source. The apportionment of aerosol light extinction (bext,aer) according to resolved sources showed that considering all samples together nitrate contributed at most (on average 41.6%), followed by sulphate, traffic, and wood burning accounting for 18.3%, 17.8% and 12.4%, respectively.Graphical abstractDisplay OmittedHighlightsFine particulate matter has a detrimental impact on visibility.PM1 chemical composition, sources, and chemical light extinction were estimated.Nighttime contribution from wood burning was evident.Ammonium nitrate and organic matter contributed at most to light extinction.Chemical light extinction at an urban site was assessed using tailored extinction coefficients and the role of major PM1components and sources was estimated.
机译: 摘要 在本文中,是在特征明确的PM 1 上执行的受体建模结果ce:inf>数据集与化学光消光数据(b ext )相结合,目的是评估不同PM 1 有关在欧洲污染严重的城市地区的消光和能见度的成分和来源。值得注意的是,尽管在许多受污染地区,这是主要的环境挑战之一,但在本文中,尽管我们是目前面临的主要环境挑战,但仍很少有论文评估不同排放源对消光的影响。遵循著名的IMPROVE算法的概念,此处采用了量身定制的方法(由我们小组最近开发),用于评估由于PM 1 组件和主要来源。 PM 1 对米兰(意大利)市区白天和晚上分别收集的样品进行了化学表征,包括元素,主要离子,元素和有机碳以及左旋葡聚糖。对化学光的消光进行了估算,结果表明,在所调查的城市场所,硝酸铵和有机物对它的影响很大。受体建模(即正矩阵分解,EPA-PMF 5.0)可以有效地进行源分配。找到了最可靠的解决方案,其中有7个因素被暂定与硝酸盐,硫酸盐,木材燃烧,交通,工业,细尘和富含Pb的来源有关。根据已解析的资料,对气溶胶的消光进行了分摊(b ext,aer ),结果表明,考虑所有样品,硝酸盐的贡献最大(平均为41.6%),其次硫酸,交通和木材燃烧分别占18.3%,17.8%和12.4%。 图形摘要 显示省略 突出显示 细颗粒物会对可见度产生不利影响。 估计了PM1的化学成分,来源和化学灭光性。 木材燃烧的夜间影响很明显。 硝酸铵 使用定制的消光系数评估了城市现场的化学光消光,并估算了主要PM 1 和来源的作用。

著录项

  • 来源
    《Environmental pollution》 |2018年第2期|679-689|共11页
  • 作者单位

    Department of Physics, Università degli Studi di Milano and INFN Milan;

    Department of Physics, Università degli Studi di Milano and INFN Milan;

    Department of Physics, Università degli Studi di Milano and INFN Milan;

    Department of Chemistry, Università degli Studi di Milano;

    Department of Chemistry, Università degli Studi di Milano;

    Department of Physics, Università degli Studi di Milano and INFN Milan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PM1; Light extinction; Composition; Sources;

    机译:PM1;消光;组成;光源;
  • 入库时间 2022-08-17 13:25:41

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