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Abundance and biomass of Arctic benthic species
While the Arctic may be an inhospitable environment at the surface, the benthos is teaming with life. Even though this wealth of life is known to exist, information on the... -
Protist (including algae) abundance and biodiversity data collected with shor...
The data has been collected during the year-long drift expedition "Multidisciplinary drifting Observatory for the Study of Arctic Climate" (MOSAiC) from September 2019 to... -
Sea-ice protist (including ice algae) abundance and biodiversity data from ic...
The data has been collected during the expedition "Multidisciplinary drifting Observatory for the Study of Arctic Climate" (MOSAiC) from September 2019 to September 2020 on... -
Seawater carbonate chemistry and population structure of Ervilia castanea (Mo...
Sites with naturally high CO2 conditions provide unique opportunities to forecast the vulnerability of coastal ecosystems to ocean acidification, by studying the biological... -
Abundance, migrant biomass and carbon flux data of micronekton (fishes and cr...
The values of carbon flux were determined in juveniles/adults of 3 species of migratory mesopelagic fishes, 2 species of decapods and 2 species of large euphausiids sampled... -
Empirical Evidence Reveals Seasonally Dependent Reduction in Nitrification in...
Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocean acidification under realistic climate change scenarios. We measured... -
Effects of ocean acidification on population dynamics and community structure...
Calcification and growth of crustose coralline algae (CCA) are affected by elevated seawater pCO2 and associated changes in carbonate chemistry. However, the effects of ocean... -
Ocean acidification impairs vermetid reef recruitment
Vermetids form reefs in sub-tropical and warm-temperate waters that protect coasts from erosion, regulate sediment transport and accumulation, serve as carbon sinks and provide... -
Makrozooplankton at ALOHA Station during cruise HOT-78
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-77
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-76
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-75
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-74
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-73
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-72
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-71
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-70
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-69
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-68
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using... -
Makrozooplankton at ALOHA Station during cruise HOT-67
Nets are towed obliquely at approx. 1 knot, from the surface to approx. 175 m. Towing time is approx. 20 minutes. Zooplankton (weak swimmers >200µm) are collected using...
