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Benthic mineralization rates at two locations in the southern North Sea
- Source :
- Journal of Sea Research, 36(3-4), 181-191. ELSEVIER SCIENCE BV
- Publication Year :
- 1996
- Publisher :
- Elsevier BV, 1996.
-
Abstract
- Benthic oxygen uptake, sulphate reduction and benthic bacterial production were measured at two contrasting locations in the southern North Sea: the shallow and turbulent Broad Fourteens area in the Southern Eight, and the deeper Oyster Grounds, a deposition area, where thermohaline stratification occurs during summer, Oxygen uptake and sulphate reduction showed a clear seasonal pattern in the Broad Fourteens area, indicating a supply of carbon to the benthic system that is closely related to the standing stock of carbon in the water column. This close benthic-pelagic coupling is probably due to the influence of the tide in this part of the North Sea, which keeps the water column permanently mixed, At the Oyster Grounds, no seasonal pattern was observed. Peaks in oxygen uptake and sulphate reduction were found in winter, Irregularly occurring events, such as storms and fishery-related activities, are likely to affect the benthic mineralization patterns in this area, Annual benthic carbon mineralization rates estimated from oxygen uptake rates were 44 gC . m(-2) at the Broad Fourteens, and 131 gC . m(-2) at the Oyster Grounds, of which 26 and 28%, respectively, could be attributed to sulphate reduction (assuming an annual sulphide reoxidation rate of 100%). Although sulphate reduction rates in the southern North Sea are higher than previously suggested, aerobic respiration is the most important pathway for benthic carbon mineralization at the stations visited, Production rates of benthic bacterial carbon measured with labelled leucine were much higher than carbon mineralization rates based on oxygen uptake or sulphate reduction. This may either imply a very high bacterial carbon conversion efficiency, or point to shortcomings in the accuracy of the techniques. A critical evaluation of the techniques is recommended.
- Subjects :
- Oyster
Mineralization (geology)
sulphate reduction
COASTAL MARINE-SEDIMENTS
Aquatic Science
Oceanography
bacterial production
OXYGEN
BIOMASS
chemistry.chemical_compound
Water column
biology.animal
Organic matter
Ecosystem
Sulfate
BACTERIAL SULFATE REDUCTION
Ecology, Evolution, Behavior and Systematics
chemistry.chemical_classification
SANDY SEDIMENTS
benthic oxygen uptake
biology
fungi
PATHWAYS
COMMUNITY
ORGANIC-MATTER
chemistry
Benthic zone
PROTEIN-SYNTHESIS
ECOSYSTEM
Thermohaline circulation
geographic locations
Subjects
Details
- ISSN :
- 13851101
- Volume :
- 36
- Database :
- OpenAIRE
- Journal :
- Journal of Sea Research
- Accession number :
- edsair.doi.dedup.....d2a6663f89825f52935c35431c663711
- Full Text :
- https://doi.org/10.1016/s1385-1101(96)90788-1