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Concentration and Distribution of Heavy Metals in Urban Airborne Particulate Matter in Frankfurt am Main,Germany

机译:德国美因河畔法兰克福市城市空气中颗粒物的重金属含量和分布

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摘要

Heavy metal concentrations were measured in airborne dust collected at three sites with different traffic densities from August 2001 to July 2002 in the Frankfurt am Main area.Bulk samples of particulate matter (PM) with an aerodynamic equivalent diameter of <22mum were collected on cellulose nitrate filters using air filtration devices.Fractionated samples of PM with an aerodynamic equivalent diameter of <10mum were collected using an eight-stage Andersen impactor.Pb,Cd,Mn,Ni,Zn,V,As,Sb,Cu,Cr,Co,and Ce were determined by inductively coupled plasma sector field mass spectrometry,Pt and Rh were determined by adsorptive voltammetry,and Pd was determined by total reflection X-ray fluorescence analysis.The results show that the highest airborne heavy metal concentrations occurred at the main street with a large volume of traffic.With the exception of Co,V,Ce,and Mn,the heavy metals had an elevated enrichment factor compared to their concentrations in the continental crust.The main street site was especially contaminated with Sb,Zn,Cu,V,and Ni.Motor vehicles are the likely source of emissions.With the exception of Cr,Cu,and Zn,most of the airborne heavy metal concentrations determined for impactor samples deviate slightly from the results for total airborne dust.Heavy metal particle size distributions can be divided into three groups.For metals such as As,Cd,Pb,and V,the main fraction can be found in fine particles with a diameter of <2.1mum,whereas Ce,Cr,Co,and Ni occur mainly in coarse particles with a diameter of >2.1mum.Cu,Mn,Sb,Zn,Pt,Pd,and Rh occur in high concentrations in the medium range of the impactor stages (particle diameters of 1.1-4.7mum).Metal concentrations in fine dust particles are needed to assess the human health risks of their inhalation.
机译:在2001年8月至2002年7月在美因河畔法兰克福的三个交通密度不同的地点收集的空气中灰尘中的重金属浓度进行了测量,在空气中当量直径小于22um的颗粒物质(PM)的大量样品被收集在硝酸纤维素上。使用八级安徒生撞击器收集空气等效当量直径小于10微米的PM的分离样品.Pb,Cd,Mn,Ni,Zn,V,As,Sb,Cu,Cr,Co,电感耦合等离子体扇区质谱法测定Ce和Ce,吸附伏安法测定Pt和Rh,全反射X射线荧光分析法测定Pd。结果表明,空气中的重金属浓度最高与Co,V,Ce和Mn相比,重金属的富集系数比其在大陆壳中的浓度高。尤其是被Sb,Zn,Cu,V和Ni污染。机动车可能是排放源。除Cr,Cu和Zn之外,为撞击器样品确定的大多数空气中重金属浓度与重金属的粒度分布可分为三类。对于As,Cd,Pb和V等金属,主要成分可存在于直径小于2.1微米的细颗粒中,而Ce,Cr,Co和Ni主要存在于直径大于2.1微米的粗颗粒中.Cu,Mn,Sb,Zn,Pt,Pd和Rh高浓度地发生在撞击阶段的中间范围内(粒径(1.1-4.7mum)。需要评估粉尘中的金属浓度,以评估吸入这些物质对人体健康的危害。

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  • 来源
    《Environmental Science & Technology》 |2005年第9期|p.2983-2989|共7页
  • 作者单位

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

    Institute of Mineralogy,Department of Analytical Environmental Chemistry,J.W.Goethe-University,Georg-Voigt-Strasse 16,D-60054 Frankfurt am Main,Institute of Spectrochemistry and Applied Spectroscopy,Bunsen-Kirchhoff-Strasse 11,D-44139 Dortmund,Umwelt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:53

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