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Effects of tubificid bioturbation on bioaccumulation of Cu and Zn released from sediment by aquatic organisms

机译:大氧化生物扰动对水生生物沉积物释放的Cu和Zn生物累积的影响

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摘要

To investigate the effects of bioturbation on absorption and enrichment of pollutants from sediments by aquatic organisms, microcosm systems similar to natural aquatic environment were established, and the release of Cu and Zn from the sediment, and their accumulation in some typical aquatic organisms, including submerged plants, floating plants and fish, with the presence of tubificids of different densities were measured. The results of this pilot study showed that the presence of tubificids promoted the migration of the trace metals from sediment to overlying water, especially when there were more worms and especially for Cu which is not easily released from the sediment. During the experiment, Cu in overlying water was mainly in particulate fraction. While for Zn, it was mainly in dissolved form in the early stage of the experiment, and then the dominant fraction gradually changed to particulate fraction. The bioturbation of tubificids also promoted the accumulation of both Cu and Zn in the aquatic organisms. In one system, different types of aquatic organisms showed different features for the accumulation of Cu and Zn. Meanwhile, with the presence of different intensity of bioturbation, the concentration of Cu or Zn in the same kind of organism was different. After a 30-day experiment, trace metal concentration in the aquatic organisms generally decreased in the order of floating plants (lesser duckweed) > submerged plants (Amazon sword) > small fish (zebrafish), and the concentration of Zn in the organisms was usually significantly higher than that of Cu in the same organism, especially in duckweed and zebrafish. However, the presence of tubificids and the density of them had more considerable effects on the uptake of Cu by the organisms, than on the uptake of Zn.
机译:为了探讨生物扰动对水生生物沉积物的吸收和富集的影响,建立了类似于天然水生环境的微观体系,以及沉积物中的Cu和Zn的释放,以及它们在一些典型的水生生物中的积累,包括淹没测量植物,浮植物和鱼类,具有不同密度的肿瘤的存在。该试点研究的结果表明,大氧化合物的存在促进了痕量金属从沉淀物中迁移到覆盖水中,特别是当有更多的蠕虫时,特别是对于不容易从沉积物释放的Cu。在实验期间,覆覆水中的Cu主要在颗粒级分中。而对于Zn,它主要以实验的早期阶段溶解形式,然后优势级分逐渐变为颗粒级分。大氧化合物的生物扰动还促进了Cu和Zn在水生生物中的积累。在一种系统中,不同类型的水生生物显示出不同类型的Cu和Zn的累积特征。同时,随着不同强度的生物扰动强度,同一种生物体中Cu或Zn的浓度不同。经过30天的实验后,水生生物中的痕量金属浓度通常按浮植物(较小的鸭草)>浸没植物(亚马逊剑)>小鱼(斑马鱼),并且生物体中Zn的浓度通常下降显着高于同一生物体中的铜,特别是在浮萍和斑马鱼中。然而,大氧化合物的存在和它们的密度对生物体的Cu的摄取具有更大的影响,而不是在Zn的摄取。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|140471.1-140471.11|共11页
  • 作者单位

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

    Key Lab of Groundwater Resources and Environment of Ministry of Education Key Lab of Water Resources and Aquatic Environment of Jilin Province College of New Energy and Environment Jilin University Changchun 130012 China;

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

    Bioturbation; Tubificid; Sediment; Copper; Zinc; Bioaccumulation;

    机译:生物扰动;傻瓜;沉淀;铜;锌;生物累积;

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