首页> 外文期刊>The Science of the Total Environment >Extreme spatial variation of Sr, Nd and Pb isotopic signatures and 48 element mass fractions in surface sediment of the Elbe River Estuary - Suitable tracers for processes in dynamic environments?
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Extreme spatial variation of Sr, Nd and Pb isotopic signatures and 48 element mass fractions in surface sediment of the Elbe River Estuary - Suitable tracers for processes in dynamic environments?

机译:SR,Nd和Pb同位素签名的极端空间变异和易北河河口表面沉积物中48元质量分数 - 适用于动态环境中工艺的工艺吗?

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摘要

The Elbe River has been long considered as one of the most anthropogenically impacted rivers in Europe. Its estuary is characterized by strong tidal effects, continuous dredging and dumping of sediment, and intense ship traffic between the North Sea and the Port of Hamburg. The aim of this study was to elucidate if a combined multi-element fingerprinting and isotopic tracer approach represented a suitable tool to investigate transport and mixing processes of inorganic contaminants within a complex and highly dynamic estuarine environment A total of 37 surface sediment samples from the tidal Elbe were characterized in a comprehensive survey by determining the mass fractions of 48 elements and the isotopic signatures of stable Sr, Nd and Pb. Statistical data analysis resolved four discrete clusters of sampling locations in the estuary: One cluster upstream of the city of Hamburg, two clusters within the mixing zone between Hamburg and the mouth of the Elbe Estuary and one duster in the mouth of the Estuary. River sediment entering the estuary carry significantly higher loads of metals (e.g. Cu, Zn, Sb, Cd and Pb), which are rapidly "diluted" by lower elemental mass fractions in marine sediment on a remarkably small regional scale. The cluster within the mouth of the estuary is mainly characterized by extreme isotopic variations of n(Pb-205)(Pb-204) ranging from 38.67 +/- 0.15 to 73.86 +/- 0.29, beside high mass fractions of 1.1,Th, and some rare-earth elements. Determined Pb isotope ratios are among the highest reported values for terrestrial materials.This study indicates the general potential of combined element fingerprinting and isotope tracer approaches to elucidate processes in complex river systems. Furthermore, it represents an initial characterization of the catchment area of the Elbe River as basis for future studies on river and harbor management. (C) 2019 Elsevier B.V. All rights reserved.
机译:易北河已经长期被认为是欧洲最具人为受影响的河流之一。其河口的特点是强烈的潮汐效应,连续疏浚和抛弃沉积物,北海与汉堡港之间的强烈船舶交通。本研究的目的是阐明组合的多元素指纹和同位素示踪方法代表了在复杂和高度动态的偏毒素环境中调查无机污染物的运输和混合过程的合适工具,总共37个表面沉积物样本来自潮汐通过确定48个元素的质量分数和稳定的SR,Nd和Pb同位素签名的质量分数,尤其是综合调查。统计数据分析解决了河口中的四个采样位置的四个离散集群:汉堡市上游的一个集群,在汉堡和易北河口之间的混合区内的两个集群和浅谈河口口中的一次除尘器。进入河口的河沉积物具有显着较高的金属负荷(例如Cu,Zn,Sb,Cd和Pb),其在船舶沉积物中的较低元素质量分数上以显着小的区域等级迅速“稀释”。河口口内的簇主要是由38.67 +/- 0.15至73.86 +/- 0.29的N(PB-205)/ N(PB-204)的极端同位素变化,除了1.1的高质量分数, TH和一些稀土元素。确定的Pb同位素比是陆地材料的最高报道值。本研究表明联合元素指纹识别和同位素示踪剂方法的一般潜力,以阐明复杂河流系统的过程。此外,它代表了易北河集水区的初步表征作为河流和港湾管理的未来研究的基础。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第10期|512-523|共12页
  • 作者单位

    Helmholtz Zentrum Geesthacht Inst Coastal Res Marine Bioanalyt Chem Max Planck Str 1 D-21502 Geesthacht Germany|Univ Hamburg Dept Chem Inorgan & Appl Chem Martin Luther King Pl 6 D-20146 Hamburg Germany;

    Helmholtz Zentrum Geesthacht Inst Coastal Res Marine Bioanalyt Chem Max Planck Str 1 D-21502 Geesthacht Germany|Univ Hamburg Dept Chem Inorgan & Appl Chem Martin Luther King Pl 6 D-20146 Hamburg Germany;

    Helmholtz Zentrum Geesthacht Inst Coastal Res Marine Bioanalyt Chem Max Planck Str 1 D-21502 Geesthacht Germany;

    Helmholtz Zentrum Geesthacht Inst Coastal Res Marine Bioanalyt Chem Max Planck Str 1 D-21502 Geesthacht Germany|Univ Leoben Dept Gen Analyt & Phys Chem Chair Gen & Analyt Chem Franz Josef Str 18 A-8700 Leoben Austria;

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

    Multi-isotope approach; Rare-earth elements; ICP-MS; ICP-MS/MS; MC 1CP-MS; Environmental analysis;

    机译:多同位素方法;稀土元素;ICP-MS;ICP-MS / MS;MC 1CP-MS;环境分析;
  • 入库时间 2022-08-18 22:35:51

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