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PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and swimming activity, oxygen uptake,growth and ...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted to increase the energy use of marine fishes via physiological and... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Concentrations of suspended and exported organic matter and nutrients during ...
This dataset has no description
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PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Water mass proportions, hydrographic and biogeochemical data below 1000 dbar ...
Database including the hydrographic and biogeochemical data collected along the A16N&S, within the GO-SHIP program in 2013. The database also includes the water mass... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and elemental composition and growth rates of Em...
This dataset has no description
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PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and growth of the dinoflagellate Alexandrium tam...
The effects and interactive effects of different nitrogen (N) sources (ammonium, nitrate, and urea) and carbon dioxide (CO2) concentrations were investigated on Alexandrium... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and Southern Ocean phytoplankton community chara...
The rise in anthropogenic CO2 and the associated ocean acidification (OA) will change trace metal solubility and speciation, potentially altering Southern Ocean (SO)... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and Calcium carbonate (CaCO3) sediment dissolution
Ocean acidification (OA), attributed to the sequestration of atmospheric carbon dioxide (CO2) into the surface ocean, and coastal eutrophication, attributed in part to land-use... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and abundance, biomass and growth rate of the ph...
The main goal of this study was to evaluate short-term interactions between increased CO2, UVR and inorganic macronutrients (N, P and Si) on summer phytoplankton assemblages in... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Seawater carbonate chemistry and data of physiological response of a golden t...
The development of golden tides is potentially influenced by global change factors, such as ocean acidification and eutrophication, but related studies are very scarce. In this... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Interactive effects of ocean acidification and nitrogen limitation on two blo...
Global climate change involves an increase in oceanic CO2 concentrations as well as thermal stratification of the water column, thereby reducing nutrient supply from deep to... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Nitrate limitation and ocean acidification interact with UV-B to reduce photo...
It has been proposed that ocean acidification (OA) will interact with other environmental factors to influence the overall impact of global change on biological systems.... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Macroalgal responses to ocean acidification depend on nutrient and light levels
Ocean acidification may benefit algae that are able to capitalize on increased carbon availability for photosynthesis, but it is expected to have adverse effects on calcified... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
CO2 and inorganic nutrient enrichment affect the performance of a calcifying ...
Ocean acidification studies in the past decade have greatly improved our knowledge of how calcifying organisms respond to increased surface ocean CO2 levels. It has become... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Effects of CO2 and iron availability on rbcL gene expression in Bering Sea di...
Iron (Fe) can limit phytoplankton productivity in approximately 40% of the global ocean, including in high-nutrient, low-chlorophyll (HNLC) waters. However, there is little... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Synergistic effects of pCO2 and iron availability on nutrient consumption rat...
Little is known concerning the effect of CO2 on phytoplankton ecophysiological processes under nutrient and trace element-limited conditions, because most CO2 manipulation... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
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.... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
CO2 and vitamin B12 interactions determine bioactive trace metal requirements...
Phytoplankton growth can be limited by numerous inorganic nutrients and organic growth factors. Using the subarctic diatom Attheya sp. in culture studies, we examined how the... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Ocean acidification outweighs nutrient effects in structuring seagrass epiphy...
Developing a framework for assessing interactions between multiple anthropogenic stressors remains an important goal in environmental research. In coastal ecosystems, the... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Decline in growth of foraminifer Marginopora rossi under eutrophication and o...
The combination of global and local stressors is leading to a decline in coral reef health globally. In the case of eutrophication, increased concentrations of dissolved... -
PANGAEA (Data Publisher for Earth & Environmental Science)
Imported
Experiment: Influence of CO2 and nitrogen limitation on the coccolith volume ...
Coccolithophores, a key phytoplankton group, are one of the most studied organisms regarding their physiological response to ocean acidification/carbonation. The biogenic...