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Direct linkage between dimethyl sulfide production and microzooplankton grazi...
Oceanic dimethyl sulfide (DMS) is the enzymatic cleavage product of the algal metabolite dimethylsulfoniopropionate (DMSP) and is the most abundant form of sulfur released into... -
Influence of sediment acidification and water flow on sediment acceptance and...
Although ocean acidification is expected to reduce carbonate saturation and yield negative impacts on open-ocean calcifying organisms in the near future, acidification in... -
Enhancement of photosynthetic carbon assimilation efficiency by phytoplankton...
A mesocosm experiment was conducted to evaluate the effects of future climate conditions on photosynthesis and productivity of coastal phytoplankton. Natural phytoplankton... -
Effects of CO2 enrichment on photosynthesis, growth, and nitrogen metabolism ...
Seagrass ecosystems are expected to benefit from the global increase in CO2 in the ocean because the photosynthetic rate of these plants may be Ci-limited at the current CO2... -
Effect of increased pCO2 on bacterial assemblage shifts in response to glucos...
Ocean acidification may stimulate primary production through increased availability of inorganic carbon in the photic zone, which may in turn change the biogenic flux of... -
Ocean acidification and the loss of phenolic substances in marine plants
Rising atmospheric CO2 often triggers the production of plant phenolics, including many that serve as herbivore deterrents, digestion reducers, antimicrobials, or ultraviolet... -
Seawater carbonate chemistry and reproduction of a coral reef fish in a labor...
Ocean acidification is predicted to negatively impact the reproduction of many marine species, either by reducing fertilization success or diverting energy from reproductive... -
PeECE III - Pelagic Ecosystem CO2 Enrichment Study, Raunefjord, Bergen, Norwa...
The effects of CO2-induced seawater acidification on plankton communities were also addressed in a series of 3 mesocosm experiments, called the Pelagic Ecosystem CO2 Enrichment... -
PeECE II - Pelagic Ecosystem CO2 Enrichment Study, Raunefjord, Bergen, Norway
The effects of CO2-induced seawater acidification on plankton communities were also addressed in a series of 3 mesocosm experiments, called the Pelagic Ecosystem CO2 Enrichment... -
Seawater carbonate chemistry and community metabolism during an experiment wi...
The effect of elevated pCO2 on the metabolism of a coral reef community dominated by macroalgae has been investigated utilizing the large 2650 m3 coral reef mesocosm at the... -
Seawater carbonate chemistry and processes during an experiment with coral re...
The concentration of CO2 in the atmosphere is projected to reach twice the preindustrial level by the middle of the 21st century. This increase will reduce the concentration of... -
Seawater carbonate chemistry, calcification and photosynthesis during experim...
An investigation was conducted to determine the effects of elevated pCO2 on the net production and calcification of an assemblage of corals maintained under near-natural... -
Increased fitness of a key appendicularian zooplankton species under warmer, ...
Ocean warming and acidification (OA) may alter the fitness of species in marine pelagic ecosystems through community effects or direct physiological impacts. We used the... -
Experiment on swimming kinematics and foraging behaviour of Atlantic herring ...
Data on kinematics of swimming behavior of Atlantic herring larvae cultured in the laboratory under three pCO2 conditions (control - 370, medium - 1800, and high - 4200 µatm)... -
Seawater carbonate chemistry and severe tissue damage in Atlantic cod larvae ...
Ocean acidification, caused by increasing atmospheric concentrations of CO2, is one of the most critical anthropogenicthreats to marine life. Changes in seawater carbonate... -
Carbonate system data on the Molokai reef flat
The severity of the impact of elevated atmospheric pCO2 to coral reef ecosystems depends, in part, on how seawater pCO2 affects the balance between calcification and dissolution...