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Modeling Cadmium Exchange by an Aquatic Moss (Fontinalis dalecarlica)

机译:通过水生苔藓(Fontinalis dalecarlica)模拟镉交换

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摘要

Although aquatic mosses are widely used as metal biomonitors in rivers,there are few effective models to describe metal uptake and loss by these plants.To fill this gap,we exposed the aquatic moss Fontinalis dalecarlica for 28 d to three Cd concentrations (approx5-50 nM) in a flow-through laboratory system.Cadmium accumulation by F.dalecarlica was rapid during the first few days of exposure and slowed thereafter but did not reach a steady state within our 1-month long experiment.This lack of a plateau in moss concentrations suggests that,for biomonitoring purposes,the duration of moss exposure should be considered either through a model of the type that we tested or by standardizing the exposure time of mosses transplanted in the field.During the subsequent 22-d elimination phase of our experiment,Cd concentrations in mosses did not return to their initial levels.This result suggests that a two-compartment model is likely to be more effective at describing Cd losses than would a one-compartment alternative.Indeed,predictions of a two-compartment model closely fitted our experimental data,which augurs well for the wider use of this model for other moss species and metals.
机译:尽管水生苔藓被广泛用作河流中的金属生物监测器,但很少有有效的模型来描述这些植物对金属的吸收和损失。为填补这一空白,我们将水生苔藓Fontinalis dalecarlica暴露了28 d至3 Cd浓度(约5-50)。 nM)在流通实验室系统中.F.dalecarlica的镉积累在暴露的前几天迅速,此后减慢,但在我们为期1个月的长期实验中未达到稳定状态。浓度表明,出于生物监测的目的,应通过我们测试的模型或通过标准化田间移植的苔藓的暴露时间来考虑苔藓暴露的持续时间。在随后的22天消除实验阶段,苔藓中的Cd浓度未恢复到初始水平。此结果表明,两室模型在描述Cd损失方面可能比一室模型更有效。实际上,对两室模型的预测与我们的实验数据非常吻合,这为将该模型更广泛地用于其他苔藓物种和金属开辟了良好的前景。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第9期|p.3056-3060|共5页
  • 作者单位

    Departement de Chimie-Biologie,Universite du Quebec a Trois-Rivieres,C.P.500,Trois-Rivieres,Quebec,G9A 5H7,Canada,and Institut National de la Recherche Scientiflque -Eau,Terre et Environnement (INRS-ETE),Universite' du Quebec,490 de la Couronne,Queb;

    Departement de Chimie-Biologie,Universite du Quebec a Trois-Rivieres,C.P.500,Trois-Rivieres,Quebec,G9A 5H7,Canada,and Institut National de la Recherche Scientiflque -Eau,Terre et Environnement (INRS-ETE),Universite' du Quebec,490 de la Couronne,Queb;

    Departement de Chimie-Biologie,Universite du Quebec a Trois-Rivieres,C.P.500,Trois-Rivieres,Quebec,G9A 5H7,Canada,and Institut National de la Recherche Scientiflque -Eau,Terre et Environnement (INRS-ETE),Universite' du Quebec,490 de la Couronne,Queb;

    Departement de Chimie-Biologie,Universite du Quebec a Trois-Rivieres,C.P.500,Trois-Rivieres,Quebec,G9A 5H7,Canada,and Institut National de la Recherche Scientiflque -Eau,Terre et Environnement (INRS-ETE),Universite' du Quebec,490 de la Couronne,Queb;

  • 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 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:51

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