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Effects of lanthanum and lanthanum-modified clay on growth, survival and reproduction of Daphnia magna

机译:镧和镧改性粘土对水蚤生长,存活和繁殖的影响

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摘要

The novel lanthanum-modified clay water treatment technology (Phoslock~®) seems very promising in remediation of eutrophied waters. Phoslock~® is highly efficient in stripping dissolved phosphorous from the water column and in intercepting phosphorous released from the sediments. The active phosphorous-sorbent in Phoslock~® is the Rare Earth Element lanthanum. A leachate experiment revealed that lanthanum could be released from the clay, but only in minute quantities of 0.13-2.13 μgl~(-1) for a worst-case Phoslock~® dosage of 250 mgl~(-1). A life-history experiment with the zooplankton grazer Daphnia magna revealed that lanthanum, up to the 1000 μgl~(-1) tested, had no toxic effect on the animals, but only in medium without phosphorous. In the presence of phosphorous, rhabdophane (LaPO_4 • nH_2O) formation resulted in significant precipitation of the food algae and consequently affected life-history traits. With increasing amounts of lanthanum, in the presence of phosphate, animals remained smaller, matured later, and reproduced less, resulting in lower population growth rates. Growth rates were not affected at 33 μg La l~(-1), but were 6% and 7% lower at 100 and 330 μgl~(-1), respectively, and 20% lower at 1000 μgl~(-1). A juvenile growth assay with Phoslock~® tested in the range 0-5000 mg l~(-1), yielded EC_(50) (NOEC) values of 871 (100) and 1557 (500) mg Phoslock~® l~(-1) for weight and length based growth rates, respectively. The results of this study show that no major detrimental effects on Daphnia are to be expected from Phoslock~® or its active ingredient lanthanum when applied in eutrophication control.
机译:新型的镧改性粘土水处理技术(Phoslock®)在富营养化水的修复中似乎很有希望。 Phoslock〜®在从水柱中汽提溶解的磷和拦截从沉积物中释放的磷方面非常有效。 Phoslock®中的活性磷吸附剂是稀土元素镧。渗滤液实验表明,镧可以从粘土中释放出来,但是对于最坏的情况,在250 mgl〜(-1)的情况下,镧的释放量仅为0.13-2.13μgl〜(-1)的微量。浮游动物放牧者Daphnia magna的生活史实验表明,测试的镧至1000μgl〜(-1)对动物没有毒性作用,仅在无磷的培养基中有。在存在磷的情况下,横纹烷(LaPO_4•nH_2O)的形成会导致食物藻类大量沉淀,从而影响生活史特征。随着镧含量的增加,在磷酸盐的存在下,动物的体型变小,后来成熟,繁殖减少,导致人口增长率降低。生长速率在33μgLa l〜(-1)时不受影响,但在100和330μgl〜(-1)时分别降低6%和7%,在1000μgl〜(-1)时降低20%。在0-5000 mg l〜(-1)范围内对Phoslock〜®进行的青少年生长测定得出EC_(50)(NOEC)值为871(100)和1557(500)mg Phoslock〜®l〜(- 1)分别基于重量和长度的增长率。这项研究的结果表明,在富营养化控制中,Phoslock®®或其活性成分镧不会对水蚤造成重大不利影响。

著录项

  • 来源
    《Water Research》 |2010年第1期|309-319|共11页
  • 作者

    Miquel Luerling; Yora Tolman;

  • 作者单位

    Aquatic Ecology & Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47,6700 AA Wageningen, the Netherlands;

    Aquatic Ecology & Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47,6700 AA Wageningen, the Netherlands Waterboard Delfland, P.O. Box 3061, 2061 DB Delft, the Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    eutrophication control; lake management; lake restoration; lanthanum; life-history; modified clay; phoslock~®;

    机译:富营养化控制湖泊管理;湖泊恢复;镧;生活史;改性粘土phoslock〜®;
  • 入库时间 2022-08-17 13:49:30

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