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The benthic environment of the North Sea (56° to 61°N)

Published online by Cambridge University Press:  11 May 2009

D. Basford
Affiliation:
Marine Laboratory, P.O. Box 101, Victoria Road, Aberdeen AB9 8DB
A. Eleftheriou
Affiliation:
Marine Laboratory, P.O. Box 101, Victoria Road, Aberdeen AB9 8DB

Abstract

In an attempt to describe the physical and chemical characteristics of the sediments as an environment for the invertebrate benthos, a total of 273 stations covering the sector from 56° N to 61° N in the North Sea was sampled. The sediment samples which were collected by grab and corer were analysed for particle size (as well as silt-clay content and sorting), organic carbon, plant pigments and trace metals (Cd, Pb, Zn, Ni, Co, Cu). On a smaller scale a few stations were sampled for redox potential, pH and pesticides.

Taking into account the geological history and the on-going hydrographic processes, explanations for the formation of the sedimentary provinces in the North Sea were provided. The sediments were predominantly fine to medium sand, but there was a depth-related gradient with the finer grades, organic carbon and, to a lesser extent, plant pigment being found in the deeper sedimentation basins of the Fladen Grounds and Norwegian Trench.

Trace metals and pesticide contaminants associated with the finer organic and inorganic fractions were higher in the sediments of the above deeper areas as well as in the vicinity of estuaries. It could be concluded that despite the enhanced concentrations of Cd, Ni, Pb and Co, at the east of Shetland, which were due to a geochemical anomaly, there was no evidence of any important or large-scale contamination of the North Sea as a whole.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 1988

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References

Adams, J. A., 1987. The primary ecological sub-divisions of the North Sea: some aspects of their plankton communities. In Developments in Fisheries Research in Scotland (ed. Bailey, R. S. and Parrish, B. B.). London: Fishing News. (In Press.)Google Scholar
Adams, J. A. & Baird, I. E., 1965. Scottish plankton investigations in the near northern seas 1965, chlorophyll a and zooplankton standing crop. Annales biologiques, 22, 6566.Google Scholar
Adams, J. A. & Baird, I. E., 1970. Chlorophyll a and zooplankton standing stock surveys from Aberdeen in 1970. Annales biologiques, 27, 6466.Google Scholar
Adams, J. A. & Martin, J. H. A., 1986. The hydrography and plankton of the Moray Firth. Proceedings of the Royal Society of Edinburgh (B), 91, 3756.Google Scholar
Boon, J. P., Van Zantvoort, M. B., Govaert, M. J. M. A. & Duinker, J. C., 1985. Organochlorines in benthic polychaetes (Nephtys spp.) and sediments from the southern North Sea. Identification of individual PCB components. Netherlands Journal of Sea Research, 19, 93109.CrossRefGoogle Scholar
Buchanan, J. B., 1984. Sediment analysis. In Methods for the Study of Marine Benthos, 2nd edn (ed. Holme, N. A. and McIntyre, A. D.), pp. 4165. Oxford: Blackwell. [IBP Handbook no. 16.]Google Scholar
Cadée, G. C., 1984. Macrobenthos and macrobenthic remains on the Oyster Ground, North Sea. Netherlands Journal of Sea Research, 18, 160178.CrossRefGoogle Scholar
Caspers, H., 1980. Long-term changes in benthic fauna resulting from sewage sludge dumping into the North Sea. Progress in Water Technology, 12, 461–179.Google Scholar
Caston, V. N. D., 1979. The Quaternary sediments of the North Sea. In The North-West European Shelf Seas: The Sea Bed and the Sea in Motion. I. Geology and Sedimentology (ed. Banner, F. T., Collins, M. B. and Massie, K. S.), pp. 195270. Amsterdam: Elsevier.Google Scholar
Creutzberg, F., Wapenaar, P., Duineveld, G. & Lopez, Lopez N., 1984. Distribution and density of the benthic fauna in the southern North Sea in relation to bottom characteristics and hydrographic conditions. Rapport et procès-verbaux des réunions. Conseil international pour l'exploration de la mer, 183, 101110.Google Scholar
Dooley, H. D., 1974. Hypothesis concerning the circulation of the North Sea. Journal du Conseil, 36, 5461.CrossRefGoogle Scholar
Dooley, H. D., 1976. Phytoplankton standing crop adjacent to ocean boundaries in the northern North Sea. International Council for the Exploration of the Sea (CM. Papers and Reports), L: 28, 8 pp. [Mimeo].Google Scholar
Dooley, H. D., 1981. The role of axially varying vertical mixing along the path of a current in generating phytoplankton production. Philosophical Transactions of the Royal Society (A), 302, 649660.Google Scholar
Draper, L., 1967. Wave activity at the sea bed around northwestern Europe. Marine Geology, 5, 133140.CrossRefGoogle Scholar
Eisma, D., 1973. Sediment distribution in the North Sea in relation to marine pollution. In North Sea Science (ed. Goldberg, E. D.), pp. 131150. Cambridge, Mass.: M.I.T. Press.Google Scholar
Eisma, D., 1981. The mass-balance of suspended matter and associated pollutants in the North Sea. Rapport et procès-verbaux des réunions. Conseil international pour l'exploration de la mer, 181, 714.Google Scholar
Faubel, A., Hartwig, E. & Thiel, H., 1983. On the ecology of the benthos of sublittoral sediments, Fladen Ground, North Sea. I. Meiofauna standing stock and estimation of production. “Meteor” Forschungsergebnisse (reihe D), no. 36, 35–18.Google Scholar
Folk, R. L., 1974. Petrology of Sedimentary Rocks. Austin, Texas: Hemphill.Google Scholar
Glémarec, M., 1973. The benthic communities of the European north Atlantic shelf. Oceanography and Marine Biology, an Annual Review, 11, 263289.Google Scholar
Goldberg, E. D., 1973. Introduction. Recommendations. In North Sea Science (ed. Goldberg, E. D.), pp. 114. Cambridge, Mass.: M.I.T. Press.Google Scholar
Groot, A. J. De & Allersma, E., 1973. Field observations on the transport of heavy metals in sediments. In Heavy Metals in the Aquatic Environment (ed. Krenkel, P. A.), pp. 8589. Oxford: Pergamon Press.Google Scholar
Hartley, P. P., 1984. The benthic ecology of the Forties oilfield (North Sea). Journal of Experimental Marine Biology and Ecology, 80, 161195.CrossRefGoogle Scholar
Howarth, M. J., 1982. Tidal currents of the continental shelf. In Offshore Tidal Sands: Processes and Deposits (ed. Stride, A. H.), pp. 1026. London: Chapman and Hall.Google Scholar
Lee, A. J., 1980. North Sea: physical oceanography. In The North-West European Shelf Seas: The Sea Bed and the Sea in Motion. II. Physical and Chemical Oceanography, and Physical Resources (ed. Banner, F. T., Collins, M. B. and Massie, K. S.), pp. 467493. Amsterdam: Elsevier.Google Scholar
McIntyre, A. D. & Murison, D. J., 1973. The meiofauna of a flatfish nursery ground. Journal of Marine Biological Association of the United Kingdom, 53, 93118.CrossRefGoogle Scholar
Otto, L. (ed.), 1983. Flushing times of the North Sea. Cooperative Research Report, International Council for the Exploration of the Sea, no. 123, 159 pp.Google Scholar
Pearson, J. H. & Stanley, S. O., 1979. Comparative measurements of redox potential of marine sediments as a rapid means of assessing the effect of organic pollution. Marine Biology, 53, 371379.CrossRefGoogle Scholar
Ramster, J. W., Medler, K. J., Dooley, H. D. & Payne, R., 1975. Residual drift regimes in the northern North Sea in April-May, 1973. International Council for the Exploration of the Sea (CM. Papers and Reports), C: 13, 5 pp. [Mimeo].Google Scholar
Riepma, H. W., 1980. Residual currents in the North Sea during the INOUT phase of JONSDAP'76. “Meteor” Forschungsergebnisse (reihe A), no. 22, 1932.Google Scholar
Steele, J. H., 1956. Plant production on the Fladen ground. Journal of the Marine Biological Association of the United Kingdom, 35, 133.CrossRefGoogle Scholar
Steele, J. H., 1958. Plant production in the northern North Sea. Marine Research, no. 7, 136.Google Scholar
Strickland, J. D. H. & Parsons, T. R., 1972. A practical handbook of seawater analysis, 2nd edn.Bulletin. Fisheries Research Board of Canada, no. 167, 310 pp.Google Scholar
Stride, A. H., 1973. Sediment transport by the North Sea. In North Sea Science (ed. Goldberg, E. D.), pp. 101130. Cambridge, Mass.: M.I.T. Press.Google Scholar
Stride, A. H. & Chesterman, W. D., 1973. Sedimentation by non-tidal currents around northern Denmark. Marine Geology, 15, M53–M58.CrossRefGoogle Scholar
Tomczak, G. & Goedecke, E., 1964. Die thermische Schichtung der Nordsee auf Grund des mitteren Jahresganges der Temperatur in ½°- und 1°Feldern. Ergänzungshefte zur Deutschen hydrographische Zeitschrift (B), nr. 8, 182 pp.Google Scholar
Topping, G., 1973. Heavy metals in shellfish from Scottish waters. Aquaculture, 1, 379384.CrossRefGoogle Scholar
Zobell, C. E., 1946. Studies on redox potential of marine sediments. Bulletin of the American Association of Petroleum Geologists, 30, 477513.Google Scholar