4.6 Article

Products of biotransformation of polycyclic aromatic hydrocarbons in fishes of the Athabasca/Slave river system, Canada

期刊

ENVIRONMENTAL GEOCHEMISTRY AND HEALTH
卷 38, 期 2, 页码 577-591

出版社

SPRINGER
DOI: 10.1007/s10653-015-9744-6

关键词

PAHs; Products of biotransformation; Fish bile; Oil sands; Synchronous fluorescence spectroscopy (SFS)

资金

  1. Boreal Songbird Initiative (BSI)
  2. Aboriginal Affairs and Northern Development Canada (AANDC)
  3. Government of the Northwest Territories
  4. University of Saskatchewan
  5. Natural Science and Engineering Research Council of Canada [326415-07]
  6. Western Economic Diversification Canada [6578, 6807, 000012711]
  7. Canada Foundation for Infrastructure
  8. Canada Research Chair program
  9. High Level Foreign Experts program [GDW20123200120]
  10. State Administration of Foreign Experts Affairs, the P. R. China
  11. Einstein Professor Program of the Chinese Academy of Sciences

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Concentrations of products of biotransformation of polycyclic aromatic hydrocarbons (PBPAH) were measured in bile of five fishes of nutritional, cultural and ecological relevance from the Athabasca/Slave river system. Samples were collected in Alberta and the Northwest Territories, Canada, during three seasons. As a measure of concentrations of PBPAHs to which fishes are exposed and to gain information on the nature and extent of potential exposures of people or piscivorous wildlife, concentrations of biotransformation products of two- and three-ringed, four-ringed and five-ringed PAHs were measured using synchronous fluorescence spectroscopy. Spatial and seasonal differences were observed with greater concentrations of PBPAHs in samples of bile of fish collected from Fort McKay as well as greater concentrations of PBPAHs in bile of fish collected during summer compared to those collected in other seasons. Overall, PBPAHs were greater in fishes of lower trophic levels and fishes more closely associated with sediments. In particular, goldeye (Hiodon alosoides), consistently contained greater concentrations of all the PBPAHs studied.

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