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Heavy metals and arsenic fixation into freshwater organic matter under Gammarus pulex L. influence

机译:Gammarus pulex L.影响下重金属和砷固定在淡水有机物中

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摘要

Organic sediments are a main sink for metal pollutants in aquatic systems. However, factors that make sediments a sink of metals and metalloids are still not clear. Consequently, we investigate the role of invertebrate shredders (Gammarus pulex L.) on quality of metal and arsenic fixation into organic partitions of sediment in the course of litter decay with laboratory microcosm experiments. During the decomposition of leaf litter, G. pulex significantly facilitated the development of small particles of organic matter. The capacity of metal fixation was significantly higher in smaller particles than leaf litter and litter residuals. Thus, G. pulex enhanced metal fixation into the organic partition of sediments by virtue of increasing the amount smaller particles in the aquatic system. Furthermore, invertebrates have a significant effect on formation of dissolved organic matter and remobilization of cobalt, molybdenum and cesium, but no significant effect on remobilization of all other measured elements.
机译:有机沉积物是水生系统中金属污染物的主要汇。但是,尚不清楚使沉积物成为金属和准金属沉陷的因素。因此,我们通过实验室缩影实验研究了无脊椎动物切碎机(Gammarus pulex L.)在凋落物腐烂过程中对金属和砷固定在沉积物有机分区中的质量的作用。在凋落物分解过程中,G。pulex显着促进了有机物小颗粒的发展。在较小的颗粒中,金属固着能力明显高于叶子凋落物和凋落物残留物。因此,G。pulex通过增加水生系统中较小颗粒的数量来增强金属对沉积物有机分区的固定。此外,无脊椎动物对溶解的有机物的形成和钴,钼和铯的迁移具有显着影响,而对所有其他被测元素的迁移没有显着影响。

著录项

  • 来源
    《Environmental pollution》 |2010年第7期|P.2454-2458|共5页
  • 作者单位

    Dresden University of Technology, D-01062, Dresden, Germany Institute of General Ecology and Environmental Protection, Tharandt 01737, Germany;

    rnDresden University of Technology, D-01062, Dresden, Germany Institute of General Ecology and Environmental Protection, Tharandt 01737, Germany Institute of Material Sciences, Dresden, Germany;

    rnDresden University of Technology, D-01062, Dresden, Germany Institute of General Ecology and Environmental Protection, Tharandt 01737, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alkaline mine water; DOC; biofilm; bioremediation; invertebrates; litter decay;

    机译:碱性矿井水;DOC;生物膜生物修复;无脊椎动物凋落物腐烂;

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