2006
DOI: 10.1021/es051800i
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A Bioenergetic Biomagnification Model for the Animal Kingdom

Abstract: Species vary greatly in the degree to which they accumulate dietary contaminants. Bioenergetic processes play a key role in chemical uptake and elimination, and interspecific variation in bioaccumulation can be attributed in large part to variation in how species feed, digest, and allocate energy. We present a quantitative treatment of this relationship for the entire animal kingdom. We derive a model to predict the biomagnification factor for nonmetabolizable, slowly eliminated chemicals, BMF(max). We test th… Show more

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Cited by 65 publications
(64 citation statements)
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“…Chem. 32,2013compartments of the organism other than the lipids [27,28]. In F. candida, this other compartment is likely the cuticle, which is covered by a hydrophobic waxy layer to reduce evaporative water loss [29].…”
Section: Resultsmentioning
confidence: 99%
“…Chem. 32,2013compartments of the organism other than the lipids [27,28]. In F. candida, this other compartment is likely the cuticle, which is covered by a hydrophobic waxy layer to reduce evaporative water loss [29].…”
Section: Resultsmentioning
confidence: 99%
“…The organism–water partition coefficient ( K org,w ), or bioconcentration factor, was estimated according to: Where p w(org) , p lip(org) and p NLOM(org) are the proportions of water, lipid, and nonlipid organic matter in the animal, respectively. K OW is the n ‐octanol–water partition coefficient and φ NLOM is the partition capacity of nonlipid organic matter in the organism relative to octanol (Debruyn and Gobas 2006).…”
Section: Methodsmentioning
confidence: 99%
“…Examples of fugacity-based models are numerous in the literature, e.g., (Bettinetti et al 2006;Campfens and Mackay 1997;Debruyn and Gobas 2006). The Z values are calculated according to previously published studies (Campfens and Mackay 1997;Gandhi et al 2006).…”
Section: Model Description and Parameterizationmentioning
confidence: 99%