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Daily variations of Zn and Pb concentrations in the Defile River in relation to the resuspension of heavily polluted sediments

机译:file污河中锌和铅的浓度与重度沉积物的重悬有关的每日变化

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摘要

Sediments in the Defile River (northern France) are severely polluted by metals in the vicinity of several metallurgical plants. The aim of this paper is to identify the role played by the recurrent resuspension of these polluted sediments by boat traffic on the dissolved Pb and Zn concentrations in the river. For that purpose, several high-frequency on-line monitoring campaigns were performed. Our results clearly suggest that the resuspension of sedimentary particles into the overlying water significantly increased the dissolved electrolabile Pb and Zn contents. This increase does not persist for a long time because at night and during weekends and holidays, when the boat traffic strongly slows down, Pb and Zn concentrations drop again quickly. Our data also indicate that the biological processes (such as photosynthetic and respiration activities), diffusive and benthic fluxes, as well as dilution of pore water into the overlying water during sediment remobilization do not contribute significantly to the sharp increase of dissolved Pb and Zn concentrations in the river during the day. The good correlation between turbidity and electrolabile metal concentration allows us to discard slow AVS (Acid Volatile Sulfides) oxidation as well. Desorption of metals from sediment particles was clearly the most relevant process, responsible for the increase of dissolved Pb and Zn concentrations in the water column.
机译:迪菲尔河(法国北部)的沉积物在几家冶金厂附近被金属严重污染。本文的目的是确定船运对这些污染沉积物的周期性再悬浮对河流中溶解的铅和锌浓度的作用。为此,开展了几次高频在线监测活动。我们的结果清楚地表明,沉积颗粒重悬到上覆水中明显增加了溶解的电不稳定的Pb和Zn含量。这种增加不会持续很长时间,因为在夜间以及周末和节假日期间,当船流量大幅下降时,铅和锌的浓度又迅速下降。我们的数据还表明,生物过程(例如光合作用和呼吸活动),扩散通量和底栖通量,以及在沉积物迁移过程中将孔隙水稀释到上覆水中,对溶解的Pb和Zn浓度的急剧增加没有显着贡献。在白天在河里。浊度和不稳定金属浓度之间的良好相关性使我们也可以放弃缓慢的AVS(酸性挥发性硫化物)氧化。从沉积物颗粒中解吸金属显然是最相关的过程,导致水柱中溶解的Pb和Zn浓度增加。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|600-607|共8页
  • 作者单位

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Vrije Universiteit Brussel (VUB), Laboratory of Analytical and Environmental Chemistry (ANCH), Brussels, Belgium,IRSTEA, UR MALY, 5 rue de la Doua, CS 70077, 69626 Villeurbanne Cedex, France;

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Vrije Universiteit Brussel (VUB), Laboratory of Analytical and Environmental Chemistry (ANCH), Brussels, Belgium;

    Vrije Universiteit Brussel (VUB), Laboratory of Analytical and Environmental Chemistry (ANCH), Brussels, Belgium;

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Universite Lille 1, Laboratoire Ceosystemes, UMR CNRS 8217, CNRS - Universite Lille I Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

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

    Trace metals; Water; Sediment; Remobilization; Resuspension; Sorption;

    机译:痕量金属;水;沉淀;复员;重悬;吸附;

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