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Metal Bioaccumulation in Aquatic Species: Quantification of Uptake and Elimination Rate Constants Using Physicochemical Properties of Metals and Physiological Characteristics of Species

机译:金属在水生生物体内的蓄积:利用金属的理化特性和物种的生理特性对摄取和消除速率常数进行定量

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Mechanistic bioaccumulation models are powerful tools in environmental risk assessment as they provide insight in varying accumulation patterns across species, contaminants, and conditions, and they are applicable beyond tested cases. In these models key parameters, as absorption and elimination rate constants, are predicted based on chemical specific properties and physiological characteristics. However, due to the complex environmental behavior of metals, the development of mechanistic bioaccumulation models has lagged behind that for organic chemicals. Absorption and elimination rate constants of organic substances have long been linked to their octanol-water partition coefficient, yet no equivalent quantitative relationships exist for metals. In the present study, we successfully related metal absorption rate constants to a metal specific property, the covalent index, and a species-characteristic, the ventilation rate. This quantitative relationship holds for a wide range of organisms and metals, i.e., 17 aquatic species and 10 metals, suggesting that a generic modeling approach of metal uptake kinetics isfeasible for aquatic organisms. In contrast, elimination rate constants show no metal-specific character. Average, weight-corrected elimination rate constants are relatively similar among metals and species, suggesting that a single weight-corrected elimination rate constant can be used in bioaccumulation studies on aquatic species.
机译:机械生物积累模型是环境风险评估中的有力工具,因为它们提供了跨物种,污染物和条件的不同积累模式的洞察力,并且适用于经过测试的案例。在这些模型中,基于化学特性和生理特性预测关键参数,如吸收率和消除率常数。但是,由于金属的复杂环境行为,机械生物累积模型的开发已经落后于有机化学品。长期以来,有机物质的吸收和消除速率常数一直与它们的辛醇-水分配系数有关,但是对于金属而言,不存在等效的定量关系。在本研究中,我们成功地将金属吸收速率常数与金属比性质,共价指数以及物种特征(通气速率)相关联。这种定量关系适用于广泛的生物和金属,即17种水生物种和10种金属,这表明对于水生生物而言,采用通用的金属吸收动力学建模方法是可行的。相反,消除速率常数没有显示金属特有的特征。平均重量校正的消除速率常数在金属和物种之间相对相似,这表明单一的重量校正的消除速率常数可用于水生物种的生物蓄积研究。

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