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STEADY-STATE MODEL OF BIOTA SEDIMENT ACCUMULATION FACTOR FOR METALS IN TWO MARINE BIVALVES

机译:两个海洋双壳类动物中金属生物沉积物积累因子的稳态模型

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摘要

A model of the biota sediment accumulation factor (BSAF) is developed to relate the ratio of metal concentrations in two marine bivalves (Crassostrea virginica and Mytilus edulis) to sediment metal concentration. A generalized metal BSAF can be approximated by a simple relationship that is a function of sediment to water column partitioning, the bioconcentration factor (BCF), the depuration rate, the metal assimilation efficiency from food, the bivalve feeding rate, and the growth rate. Analyses of "Mussel Watch" data indicate that the median BSAF across stations varies by about three orders of magnitude from Zn, Cd, and Cu at the highest levels of BSAF = 1 to 10, while Cr has the lowest BSAF at 0.01. Total Hg is about 1.0 and Ni and Pb are approximately 0.1. Calibration of the model indicates that the food route of metal accumulation is significant for all metals but especially for Zn, Cd, Cu, and Hg where virtually all of the observed BSAF is calculated to be due to ingestion of metal from food in the overlying water. These results indicate a potential significance of the metal-binding protein metallo-thionein,- which results in relatively high binding of metal and resulting low depuration rates.
机译:建立了生物群落沉积物积累因子(BSAF)模型,以将两个海洋双壳类动物(Crassostrea virginica和Mytilus edulis)中的金属浓度比与沉积物金属浓度相关联。广义金属BSAF可以通过一个简单的关系来近似,该关系是沉积物与水柱分配,生物富集因子(BCF),净化率,食物中金属的同化效率,双壳类动物的进食速率和生长速率的函数。对“ Mussel Watch”数据的分析表明,在最高BSAF = 1到10的情况下,跨站的中位BSAF从锌,镉和铜的变化大约三个数量级,而Cr的最低BSAF为0.01。总汞约为1.0,镍和铅约为0.1。该模型的校准表明,金属积累的食物途径对所有金属都非常重要,但对于锌,镉,铜和汞尤其如此,实际上所有观察到的BSAF均被计算为归因于上层水中食物中的金属摄入。这些结果表明金属结合蛋白金属硫代丝氨酸的潜在重要性,其导致金属的相对高结合并导致低的提纯率。

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