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首页> 外文期刊>Marine ecology progress series >Biodynamic modelling and the prediction of Ag, Cd and Zn accumulation from solution and sediment by the polychaete Nereis diversicolor
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Biodynamic modelling and the prediction of Ag, Cd and Zn accumulation from solution and sediment by the polychaete Nereis diversicolor

机译:多斑沙鸟鱼的生物力学建模及溶液和沉积物中银,镉和锌的积累预测

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摘要

Biodynamic modelling has been used to predict bioaccumulated concentrations of Ag, Cd and Zn in the deposit-feeding polychaete Nereis diversicolor from 5 metal-contaminated estuaries in SW England and a relatively non-contaminated estuary in SE England. The modelling employed previously measured physiological parameters of bioaccumulation - uptake rate constant, assimilation efficiency (AE) and efflux rate constants after uptake from water and sediment inges-tion - and measured sediment metal concentrations specific for each population, AEs were considered to relate to metals in the organic component of the ingested sediment and ingestion rates were therefore expressed in these terms, with the further assumption that the total sediment metal concentration is a proxy for the metal concentration in the sediment organic component. A range of growth rate constants was extracted from the literature, as were concentration ranges of dissolved Ag, Cd and Zn in contaminated coastal waters. The model showed that > 99 % Cd and > 98 % Zn accumulated by N. diversicolor is derived from sediment ingestion; more bioaccumulated Ag is derived from solution, the percentage contribution of the dissolved source increasing from 46 to 80% with an increase in Ag dissolved concentration from low to high values for coastal waters. Bioaccumulated metal concentrations predicted from the model generally showed excellent agreement with independently measured concentrations in field-collected worms, supporting the assumptions made in the model.
机译:生物动力学模型已被用来预测来自英格兰西南部5个受金属污染的河口和东南英格兰一个相对未受污染的河口的,以沉积物为食的多毛Nereis diversicolor的银,镉和锌的生物累积浓度。该模型采用先前测得的生物积累的生理参数-吸收水和沉积物后的吸收速率常数,同化效率(AE)和流出速率常数-以及针对每个种群测得的特定沉积物金属浓度,认为AE与金属有关因此,用这些术语来表示被摄入沉积物有机成分中的金属浓度和摄入速率,并进一步假设总沉积物金属浓度是沉积物中有机成分中金属浓度的代表。从文献中提取了一系列的生长速率常数,以及在受污染的沿海水域中溶解的Ag,Cd和Zn的浓度范围。该模型表明,杂色猪笼草积累的镉> 99%,锌> 98%来源于沉积物的摄取;溶液中更多的生物积累的Ag,随着沿海地区Ag的溶解浓度从低到高的增加,溶解源的百分比贡献从46%增加到80%。根据模型预测的生物累积金属浓度通常与田间采集的蠕虫中独立测量的浓度显示出极好的一致性,从而支持了模型中的假设。

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  • 来源
    《Marine ecology progress series》 |2009年第18期|145-155|共11页
  • 作者单位

    Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK;

    Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK;

    Department of Zoology, The Natural History Museum, Cromwell Road, London SW7 5BD, UK John Muir Institute of the Environment, University of California at Davis, Davis, California 95616, USA;

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

    bioavailability; biodynamic modelling; sediments; uptake; efflux;

    机译:生物利用度生物动力学建模;沉积物摄取外排;

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