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Comparison of three fish bioaccumulation models for ecological and human risk assessment and validation with field data
Smítková H, Huijbregts MA, Hendriks AJ.
Language English Country Great Britain
Document type Comparative Study
- MeSH
- Models, Biological MeSH
- Water Pollutants, Chemical metabolism MeSH
- Ecology MeSH
- Risk Assessment MeSH
- Hydrophobic and Hydrophilic Interactions MeSH
- Quantitative Structure-Activity Relationship MeSH
- Humans MeSH
- Lipid Metabolism MeSH
- Oceans and Seas MeSH
- Fishes metabolism MeSH
- Fresh Water MeSH
- Animals MeSH
- Check Tag
- Humans MeSH
- Animals MeSH
- Publication type
- Comparative Study MeSH
- Geographicals
- Oceans and Seas MeSH
This article compares two bioconcentration Quantitative Structure Activity Relationships (QSARs) for fish applied in human risk assessments with the mechanistic bioaccumulation model OMEGA and field data. It was found that all models are virtually similar up to a Kow of 10(6). For substances with a Kow higher than 10(6), the fish bioconcentration curve in the risk assessment model EUSES decreases parabolically. In contrast, OMEGA bioaccumulation outcomes approximately show a linear increase, based on mechanistic bioconcentration and biomagnification properties of chemicals. The OMEGA-outcomes are close to the fish bioconcentration outcomes of the risk assessment model CalTOX. For very hydrophobic substances, field accumulation data in freshwater and marine fish species are closer to OMEGA- and CalTOX-outcomes compared to EUSES. The results also show that it is important to include biomagnification in fish and lipid content of fish in human exposure models.
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- $a Comparison of three fish bioaccumulation models for ecological and human risk assessment and validation with field data / $c Smítková H, Huijbregts MA, Hendriks AJ.
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- $a Department of Food Preservation and Meat Technology, Faculty of Food and Biochemical Technology, Institute of Chemical Technology, Prague, Technická 5, 166 28 Prague 6 - Dejvice, Czech Republic.
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- $a This article compares two bioconcentration Quantitative Structure Activity Relationships (QSARs) for fish applied in human risk assessments with the mechanistic bioaccumulation model OMEGA and field data. It was found that all models are virtually similar up to a Kow of 10(6). For substances with a Kow higher than 10(6), the fish bioconcentration curve in the risk assessment model EUSES decreases parabolically. In contrast, OMEGA bioaccumulation outcomes approximately show a linear increase, based on mechanistic bioconcentration and biomagnification properties of chemicals. The OMEGA-outcomes are close to the fish bioconcentration outcomes of the risk assessment model CalTOX. For very hydrophobic substances, field accumulation data in freshwater and marine fish species are closer to OMEGA- and CalTOX-outcomes compared to EUSES. The results also show that it is important to include biomagnification in fish and lipid content of fish in human exposure models.
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