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Bioavailability of particulate metal to zebra mussels: Biodynamic modelling shows that assimilation efficiencies are site-specific

机译:颗粒金属对斑马贻贝的生物利用度:生物动力学模型表明,同化效率是针对特定地点的

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This study investigates the ability of the biodynamic model to predict the trophic bioaccumulation of cadmium (Cd), chromium (Cr), copper (Cu), nickel (Ni) and zinc (Zn) in a freshwater bivalve. Zebra mussels were transplanted to three sites along the Seine River (France) and collected monthly for 11 months. Measurements of the metal body burdens in mussels were compared with the predictions from the biodynamic model. The exchangeable fraction of metal particles did not account for the bioavailability of particulate metals, since it did not capture the differences between sites. The assimilation efficiency (AE) parameter is necessary to take into account biotic factors influencing particulate metal bioavailability. The biodynamic model, applied with AEs from the literature, overestimated the measured concentrations in zebra mussels, the extent of overestimation being site-specific. Therefore, an original methodology was proposed for in situ AE measurements for each site and metal.
机译:这项研究调查了生物动力学模型预测淡水双壳类动物中镉(Cd),铬(Cr),铜(Cu),镍(Ni)和锌(Zn)的营养生物积累能力。斑马贻贝被移植到塞纳河沿岸的三个地点(法国),并每月收集11个月。将贻贝中的金属身体负担的测量结果与生物动力学模型的预测结果进行了比较。金属颗粒的可交换部分不能解释颗粒金属的生物利用度,因为它不能捕获位点之间的差异。考虑到影响颗粒金属生物利用度的生物因素,同化效率(AE)参数是必需的。结合文献中的AE使用的生物动力学模型高估了斑马贻贝中的测得浓度,高估的程度是针对特定地点的。因此,提出了一种用于每个位点和金属的原位AE测量的原始方法。

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