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The organic sea-surface microlayer in the upwelling region off the coast of P...
This dataset has no description
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(Table 5) Biomass of seston and symbiotic plankton on the Trans-Atlantic tran...
This dataset has no description
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Temperature effects on a plankton community from Helgoland Roads tested in an...
To investigate the effect of temperature on a North Sea spring bloom community, we performed an incubation experiment in the mesocosm facility of the Institute for Chemistry and... -
Seawater carbonate chemistry and plankton community structure during a winter...
Plankton communities play a key role in the marine food web and are expected to be highly sensitive to ongoing environmental change. Oceanic uptake of anthropogenic carbon... -
Phytoplankton responses and associated carbon cycling during shipboard carbon...
The ongoing oceanic uptake of anthropogenic carbon dioxide (CO2) is significantly altering the carbonate chemistry of seawater, a phenomenon referred to as ocean acidification.... -
Suspended matter and its components in the western Black Sea
Distribution and composition of suspended matter in the western Black Sea is examined in relation to influence of river run-off and eutrophication. Changes in suspended matter... -
(Table 1) Biomass (as energy) of different elements of the planktonic communi...
An analysis was made of composition and content of nutrients, salts, particulate and dissolved organic matter, and various plankton groups in a series of samples collected by a... -
(Table 1) Content of sand fraction components in sediments of the interglacia...
Distribution of diatoms, radiolarians, planktonic and benthic foraminifers, and sediment components in fraction >0.125 mm was analyzed in a core obtained from the central Sea... -
Benthic foraminiferal abundances from eight sites of the Northwest Australian...
Foraminiferal analysis of Miocene to recent strata of the Northwest Shelf of Australia is used to chart West Pacific Warm Pool (WPWP) influence. The assemblage is typified by... -
Diatoms determination of the last 3000 years from Lake Lubińskie in western P...
This diatoms dataset contains the age of the sample (Age [a AD/CE] and Age [ka BP]), % of main taxa contribution (columns 3-16, calculated for the taxa presented in the paper),... -
Bottom layer zooplankton abundance and biomass at station M42/2_436
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station M42/2_438
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station M42/2_419
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station M42/2_417
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station M42/2_373
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station M42/2_370
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station 13078-038
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station 13077-078
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station 13077-047
Depth, water was calculated between event depth (elevation) and depth above ground. -
Benthic nepheloid layer zooplankton abundance and biomass at station 13077-036
Depth, water was calculated between event depth (elevation) and depth above ground.
