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Seawater carbonate chemistry and growth and survival of juveniles of the stri...
Ocean acidification (OA) will decrease shellfish growth and survival, with ecological and economic consequences for fisheries and aquaculture. However, the high variability of... -
Does seawater acidification affect survival, growth and shell integrity in bi...
Anthropogenic emissions of carbon dioxide are leading to decreases in pH and changes in the carbonate chemistry of seawater. Ocean acidification may negatively affect the... -
Bottom macro-fauna biomass recorded on the Romanian NW Black Sea Shelf during...
This dataset has no description
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Bottom macro-fauna abundance recorded on the Romanian NW Black Sea Shelf duri...
This dataset has no description
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Macrobenthos along a shallow water depth gradient (5 to 20 m) in the North Se...
A transect of 30 sm (roughly 60 km) perpendicular to the coastline of the island of Sylt was sampled 4 times between October 2001 and September 2002. Sampling sites (n=21) were... -
Variability of North Sea macrozoobenthos off the Island of Sylt over 7 years ...
The macrobenthos in a fine sand site 30 km west of the island of Sylt (20 m water depth) was studied annulally in autumn by a minimum of six box cores (0.02 m²) sieved through 1... -
Variability of shallow water macrozoobenthos off Sylt (North Sea) over 10 yea...
The macrobenthos in a fine sand site 5 km west of the island of Sylt (10 m water depth) was studied annulally in autumn by a minimum of six box cores (0.02 m²) sieved through 1... -
Macrozoobenthos biomass in the prospective wind farm "Butendiek" and surround...
88 stations have been sampled with a box corer (0.02 m² surface area, 2 replicates per station) and sieved through 1 mm meshes. The residual fauna was fixed in buffered... -
Macrozoobenthos biomass in the prospective wind farm "Butendiek" and surround...
88 stations have been sampled with a box corer (0.02 m² surface area, 2 replicates per station) and sieved through 1 mm meshes. The residual fauna was fixed in buffered... -
Macrozoobenthos biomass in the prospective wind farm "Butendiek" and surround...
40 stations have been sampled with a box corer (0.02 m² surface area, 6 replicates per station) and sieved through 1 mm meshes. The residual fauna was fixed in buffered... -
Macrozoobenthos biomass in the prospective wind farm "Butendiek" and surround...
20 stations have been sampled with a box corer (0.02 m² surface area, 6 replicates per station) and sieved through 1 mm meshes. The residual fauna was fixed in buffered... -
Macrozoobenthos abundance in the prospective wind farm "Butendiek" and surrou...
88 stations have been sampled with a modified reineck box corer (0.02 m² surface area, 2 replicates per station) and sieved through 1 mm meshes. The residual fauna was sorted... -
Macrozoobenthos abundance in the prospective wind farm "Butendiek" and surrou...
88 stations have been sampled with a modified reineck box corer (0.02 m² surface area, 2 replicates per station) and sieved through 1 mm meshes. The residual fauna was sorted... -
Macrozoobenthos abundance in the prospective wind farm "Butendiek" and surrou...
40 stations have been sampled with a modified reineck box corer (0.02 m² surface area, 6 replicates per station) and sieved through 1 mm meshes. The residual fauna was sorted... -
Macrozoobenthos abundance in the prospective wind farm "Butendiek" and surrou...
20 stations have been sampled with a modified reineck box corer (0.02 m² surface area, 6 replicates per station) and sieved through 1 mm meshes. The residual fauna was sorted... -
Molluscs in surface sediments off Sylt collected during HEINCKE cruise HE293
Sample area: 0.02 m**2 -
Molluscs in surface sediments off Sylt collected during HEINCKE cruise HE278
Sample area: 0.02 m**2 -
Molluscs in surface sediments off Sylt collected during HEINCKE cruise HE275
Sample area: 0.02 m**2 -
Molluscs in surface sediments off Sylt collected during HEINCKE cruise HE272
Sample area: 0.02 m**2 -
Molluscs in surface sediments off Sylt collected during HEINCKE cruise HE262
Sample area: 0.02 m**2