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The effects of changing climate on faunal depth distributions determine winners and losersA short-term in situ CO₂ enrichment experiment on Heron Island (GBR)Man and the last great wilderness: human impact on the deep sea.Will ocean acidification affect marine microbes?A changing ocean seen with clarityPhysical and biogeochemical modulation of ocean acidification in the central North PacificThe Kallisti Limnes, carbon dioxide-accumulating subsea poolsAcoustic observation of living organisms reveals the upper limit of the oxygen minimum zone.The growing human footprint on coastal and open-ocean biogeochemistry.Effects of solar UV radiation and climate change on biogeochemical cycling: interactions and feedbacks.Warming up, turning sour, losing breath: ocean biogeochemistry under global change.Oxygen limitations on marine animal distributions and the collapse of epibenthic community structure during shoaling hypoxia.Buffering and Amplifying Interactions among OAW (Ocean Acidification & Warming) and Nutrient Enrichment on Early Life-Stage Fucus vesiculosus L. (Phaeophyceae) and Their Carry Over Effects to Hypoxia Impact.Putting Temperature and Oxygen Thresholds of Marine Animals in Context of Environmental Change: A Regional Perspective for the Scotian Shelf and Gulf of St. Lawrence.Revisiting inland hypoxia: diverse exceedances of dissolved oxygen thresholds for freshwater aquatic life.Pteropod eggs released at high pCO2 lack resilience to ocean acidificationTemperate and tropical brown macroalgae thrive, despite decalcification, along natural CO2 gradients.Detrimental effects of ocean acidification on the economically important Mediterranean red coral (Corallium rubrum).Will krill fare well under Southern Ocean acidification?Metagenome of a versatile chemolithoautotroph from expanding oceanic dead zones.Biodiversity response to natural gradients of multiple stressors on continental margins.Expansion of oxygen minimum zones may reduce available habitat for tropical pelagic fishesConservation management and sustainable harvest quotas are sensitive to choice of climate modelling approach for two marine gastropodsLimits to the sensitivity of living benthic foraminifera to pore water carbon isotope anomalies in methane vent environmentsMagnitude and oxidation potential of hydrocarbon gases released from the BP oil well blowoutFuture ocean acidification will be amplified by hypoxia in coastal habitatsLow oxygen and high inorganic carbon on the Vancouver Island ShelfGlobal constraints on net primary production and inorganic carbon supply during glacial and interglacial cycles
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description
article publié dans la revue scientifique Science
@fr
im April 2009 veröffentlichter wissenschaftlicher Artikel
@de
scientific article published in Science
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована у квітні 2009
@uk
name
OCEANS. Limits to marine life
@en
OCEANS. Limits to marine life
@nl
type
label
OCEANS. Limits to marine life
@en
OCEANS. Limits to marine life
@nl
prefLabel
OCEANS. Limits to marine life
@en
OCEANS. Limits to marine life
@nl
P356
P1433
P1476
OCEANS. Limits to marine life
@en
P2093
Peter G Brewer
P304
P356
10.1126/SCIENCE.1170756
P407
P577
2009-04-01T00:00:00Z