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道路交通环境中的新型金属排放模式。

New metal emission patterns in road traffic environments.

作者信息

Hjortenkrans David, Bergbäck Bo, Häggerud Agneta

机构信息

Department of Biology and Environmental Science, University of Kalmar, Kalmar, Sweden.

出版信息

Environ Monit Assess. 2006 Jun;117(1-3):85-98. doi: 10.1007/s10661-006-7706-2.

Abstract

The increased awareness of traffic as a major diffuse metal emission source emphasizes the need for more detailed information on the various traffic-related sources and how and where the metals are dispersed. In this study, metal emission patterns in the road traffic environment were examined from the perspective of different surrounding factors, e.g. the importance of intersections, deceleration, vehicle speed and traffic density. A total of 148 topsoil samples from 18 south Swedish roads were analysed (using GFAAS) for traffic-emitted metals, i.e. Cd, Cr, Cu, Ni, Pb, Sb and Zn. The roadside topsoil metal concentrations were used to examine correlations between metals and surrounding factors. The studied metals were divided into three groups corresponding to different emission sources: metals from decelerating activities (Cu, Sb and Zn), metals as historical residues from the combustion of petrol (Pb and Cd), and non-source-specific metals (Cr and Ni). It was found that Cu and Sb, despite their rather short history as traffic-emitted metals, have increased more than eightfold in roadside soils compared to background levels. The major source of road traffic related Cu and Sb is brake linings. The significant increase of Cu and Sb in roadside topsoil stresses the need for metal transport studies as well as effect studies of these metals. Metals emitted due to decelerating activities were not correlated to elevated concentrations near road junctions. Emission patterns of traffic-related metals alongside roads are crucial in order to be able to evaluate the optimal localization of storm water treatment ponds.

摘要

人们越来越意识到交通是主要的分散金属排放源,这凸显了获取有关各种交通相关源以及金属如何及在何处扩散的更详细信息的必要性。在本研究中,从不同周边因素的角度,例如十字路口的重要性、减速、车速和交通密度,对道路交通环境中的金属排放模式进行了研究。对瑞典南部18条道路的总共148份表层土壤样本(使用石墨炉原子吸收光谱法)进行了交通排放金属,即镉、铬、铜、镍、铅、锑和锌的分析。路边表层土壤金属浓度用于研究金属与周边因素之间的相关性。所研究的金属被分为对应不同排放源的三组:减速活动产生的金属(铜、锑和锌)、汽油燃烧产生的历史残留金属(铅和镉)以及非特定源金属(铬和镍)。研究发现,铜和锑尽管作为交通排放金属的历史较短,但与背景水平相比,路边土壤中的含量增加了八倍以上。道路交通相关的铜和锑的主要来源是刹车片。路边表层土壤中铜和锑的显著增加强调了进行金属迁移研究以及这些金属的影响研究的必要性。减速活动产生的金属排放与道路交叉口附近的浓度升高无关。为了能够评估雨水处理池的最佳位置,道路沿线交通相关金属的排放模式至关重要。

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