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The lead (Pb) isotope signature, behaviour and fate of traffic-related lead pollution in roadside soils in The Netherlands

机译:荷兰路边土壤中与交通有关的铅污染的铅(Pb)同位素特征,行为和归因

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摘要

In this study the origin, behaviour and fate of anthropogenic Pb in sandy roadside soils were assessed by measuring soil characteristics, Pb isotope composition and content. In 1991 and 2003 samples were taken at different depth intervals at approximately 8 and 75 m from two highways in The Netherlands. The Pb isotope composition of the litter layer (~(206)Pb/~(207)Pb = 1.12-1.14) differs from the deeper soil samples (~(206)Pb/~(207)Pb = 1.20-1.21). Based on a mixing model it is concluded that the samples contain two Pb sources: natural Pb and anthropogenic Pb, the latter mainly derived from gasoline. ~(206)Pb/~(207)Pb ratios demonstrate that the roadside soils were polluted to a depth of ~15 cm. Within this depth interval, anthropogenic Pb content is associated with organic matter. Although Pb pollution only reached a depth of ~15 cm, this does not mean that the topsoils retain all anthropogenic Pb. Due to the low pH and negligible binding capacity of soils at depths >15 cm, anthropogenic Pb migrated towards groundwater after reaching depths of >15 cm. The Pb isotope composition of the groundwater (~(206)Pb/~(207)Pb = 1.135-1.185) establishes that groundwater is polluted with anthropogenic Pb. The contribution of anthropogenic Pb to the groundwater varies between ~30 and 100%. Based on the difference in soil Pb content and Pb isotope compositions over a period of 12 years, downward Pb migration is calculated to vary from 72 ± 95 to 324 ± 279 mg m~(-2) y~(-1). Assuming that the downward Pb flux is constant over time, it is calculated that 35-90% of the atmospherically delivered Pb has migrated to the groundwater.
机译:在这项研究中,通过测量土壤特征,铅同位素组成和含量来评估人为铅在路边沙土中的起源,行为和命运。 1991年和2003年,分别从荷兰的两条高速公路分别在8和75 m处以不同的深度间隔取样。凋落物层中的Pb同位素组成(〜(206)Pb /〜(207)Pb = 1.12-1.14)与较深的土壤样品(〜(206)Pb /〜(207)Pb = 1.20-1.21)不同。根据混合模型得出的结论是,样品中含有两种铅源:天然铅和人为铅,后者主要来自汽油。 〜(206)Pb /〜(207)Pb的比值表明路边土壤被污染至〜15 cm的深度。在此深度范围内,人为铅的含量与有机物有关。尽管铅污染仅达到约15 cm的深度,但这并不意味着表土保留了所有人为铅。由于pH值低且在> 15 cm深度处土壤的结合能力可忽略不计,人为的Pb到达> 15 cm深度后便向地下水迁移。地下水的Pb同位素组成(〜(206)Pb /〜(207)Pb = 1.135-1.185)确定了人为的Pb污染了地下水。人为铅对地下水的贡献在〜30%和100%之间变化。根据12年间土壤Pb含量和Pb同位素组成的差异,计算得出Pb向下迁移范围为72±95至324±279 mg m〜(-2)y〜(-1)。假设向下的Pb通量随时间变化是恒定的,则可以计算出大气中输送的Pb的35-90%已迁移到地下水中。

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  • 来源
    《Science of the total environment》 |2014年第15期|888-900|共13页
  • 作者单位

    GeoConnect, Meester Dekkerstraat 4,1901 PV Castricum, The Netherlands;

    Rijksdienst voor Archeologie, Cultuurlandschap en Monumenten, P.O. Box 1600,3800 BP Amersfoort, The Netherlands;

    BRGM, 3 avenue Claude-Guillemin, BP 36009, 45060 Orleans Cedex 2, France;

    University Utrecht, Faculty of Geosciences, P.O. Box 80021, 3508 TA Utrecht, The Netherlands;

    VU University Amsterdam, Faculty of Earth and Life Sciences, Petrology, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands;

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

    Lead; Isotopes; Highways; Soils; Groundwater; Transport;

    机译:铅;同位素;公路;土壤;地下水;运输;

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