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Bioavailability of hydrophobic organic contaminants and quality of organic carbon

机译:疏水性有机污染物的生物利用度和有机碳的质量

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摘要

U.S. laws require that contaminant bioaccumulation potential be evaluated before dredged material can be recycled. Simple fugacity models, e.g. organic contaminant aqueous partition coefficient (K oc)-derived theoretical bioaccumulation potential, are commonly used to estimate the partitioning of hydrophobic organic contaminants between sediment organic matter and organism lipid. K oc-derived models, with or without the addition of a soot carbon term, did not accurately or consistently predict total polycyclic aromatic hydrocarbons (PAHs) and polychlorobiphenyls partitioning of eight sediments from ongoing dredging operations onto C18-coated filter paper. These models also failed to predict the partitioning of individual PAHs from these eight sediments. These data underscore the trade-offs between the ease of using simple models and the uncertainty of predicted partitioning values.
机译:美国法律要求在挖出的材料可以回收之前评估污染物的生物蓄积潜力。简单的逸度模型,例如有机污染物水分配系数(K oc)派生的理论生物蓄积潜力,通常用于估算疏水性有机污染物在沉积物有机质和生物脂质之间的分配。由Koc得出的模型,无论是否添加烟灰碳,都无法准确或一致地预测正在进行的挖泥操作到C18涂层滤纸上的八种沉积物的总多环芳烃(PAHs)和多氯联苯分配。这些模型也未能预测这八个沉积物中单个多环芳烃的分配。这些数据强调了在使用简单模型的简便性与预测分区值的不确定性之间的权衡。

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