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Original Articles

Polycyclic Aromatic Hydrocarbon (PAH) Ecotoxicology in Marine Ecosystems

Pages 109-123 | Published online: 24 Feb 2007
 

Abstract

Low levels of oil and hence polycyclic aromatic hydrocarbons (PAHs) are naturally present in the marine environment, although levels have increased significantly following human extraction and use of oil and gas. Other major anthropogenic sources of PAHs include smelters, the use of fossil fuels in general, and various methods of waste disposal, especially incineration. There are two major sources for PAHs to marine ecosystems in Norway: the inshore smelter industry, and offshore oil and gas production activities. A distinction is generally made between petrogenic (oil-derived) and pyrogenic (combustion-derived) PAHs. Although petrogenic PAHs appear to be bioavailable to a large extent, pyrogenic PAHs are often associated with soot particles and less available for uptake into organisms. There is extensive evidence linking sediment-associated PAHs to induction of phase-I enzymes, development of DNA adducts, and eventually neoplastic lesions in fish. Most studies have focused on high-molecular-weight, carcinogenic PAHs such as benzo[a]pyrene. It is less clear how two- and three-ring PAHs affect fish, and there is even experimental evidence to indicate that these chemicals may inhibit some components of the phase I system rather than produce induction. There is a need for increased research efforts to clarify biological effects of two- and three-ring PAHs, PAH mixtures, and adaptation processes in marine ecosystems.

Notes

Aas, E. 2000. Biomarkers for polyaromatic hydrocarbon exposure in fish. PhD thesis: University of Bergen.

Hylland, K., Becker, G., Klungsøyr, J., Lang, T., McIntosh, A., Serigstad, B., Thain, J. E., Thomas, K. V., Utvik, T. I. R., Vethaak, A. D., and Wosniok, W. 2002a. An ICES workshop on biological effects in pelagic ecosystems (BECPELAG): Summary of results and recommendations. ICES ASC CM:2002/X:13. Can be found at: http://www.ices.dk/products/CMdocs/2002/X/X-2002.PDF.

Hylland, K., Becker, G., Klungsøyr, J., Lang, T., McIntosh, A., Serigstad, B., Thain, J. E., Thomas, K. V., Utvik, T. I. R., Vethaak, A. D., and Wosniok, W. 2002b. An ICES workshop on biological effects in pelagic ecosystems (BECPELAG): Overview of the programme. ICES ASC CM:2002/X:02. Can be found at: http://www.ices.dk/products/CMdocs/2002/X/X-2002.PDF.

Johnsen, S., Røe, T. I., Durell, G., and Reed, M. 1998. Dilution and bioavailability of produced water compounds in the northern North Sea. A combined modeling and field study. Society of Petroleum Engineers, SPE 46269, presented at SPE in Caracas, Venezuela, 7–10 June.

Johnsen, S., Frost, T. K., Hjelsvold, M., and Utvik, T. I. R. 2000. The Environ. Impact Factor-A proposed tool for produced water impact reduction, management and regulation. Society of Petroleum Engineers: SPE 61178, presented at SPE in Stavanger, Norway, 26–28 June.

Næs, K. 1998. The distribution and effects on Norwegian fjord and coastal ecosystems of polycyclic aromatic hydrocarbons (PAHs) generated by the production of primary aluminium and manganese alloys. PhD thesis, University of Oslo.

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