Results 21 to 30 of about 2,049 (172)

Depth integrated biogeochemical and ecophysiological monitoring at station KB3 in Kongsfjorden (2016-2018)

open access: yes, 2021
The project AWI-funded AMUST project aims at understanding at current and future controls of Arctic spring blooms and concurrrent effetcs on biogeochemistry,by combining experimental work with long-term monitoring in April and May each year to study the ...
Finlo, Cottier   +4 more
core   +1 more source

Total benthic oxygen uptake in two Arctic fjords (Spitsbergen) with different hydrological regimes

open access: yesOceanologia, 2018
Summary: Benthic total oxygen uptake (TOU) was measured in two Arctic fjords (NW Spitsbergen shelf) with different hydrological regimes: Hornsund with “cold” coastal Arctic waters and Kongsfjorden with “warm” Atlantic shelf waters.
Lech Kotwicki   +3 more
doaj   +1 more source

February phytoplankton ecophysiology in Kongsfjorden (79°N)

open access: yes, 2021
The AWI-funded AMUST project aims at understanding at current and future controls of Arctic spring blooms and concurrent effects on biogeochemistry by combining experimental work with long-term monitoring in Kongsfjorden in spring.
Hoppe, Clara Jule Marie
core   +1 more source

Can seabirds modify carbon burial in fjords?

open access: yesOceanologia, 2017
Two high latitude fjords of Spitsbergen (Hornsund 77°N and Kongsfjorden 79°N) are regarded as being highly productive (70 g and 50 gC m−2 year−1) and having organic-rich sediments. Hornsund has more organic matter in its sediments (8%), nearly half of it
Jan Marcin Węsławski   +11 more
doaj   +1 more source

Inherent optical properties and particulate matter distribution in summer season in waters of Hornsund and Kongsfjordenen, Spitsbergen

open access: yesOceanologia, 2018
Two Spitsbergen fjords, Hornsund and Kongsfjorden, are known for being under different hydrological regimes. The first is cold, separated from warm Atlantic water by East Spitsbergen Current, while Kongsfjorden is frequently penetrated by relatively warm
Sławomir Sagan, Mirosław Darecki
doaj   +1 more source

Distribution of recent Benthic foraminifera in Kongsfjorden and Krossfjorden; North-West Svalbard, High Arctic

open access: yesJournal of the Palaeontological Society of India, 2023
Benthic foraminifera assemblages from two fjords of Svalbard—Kongsfjorden and Krossfjorden in the High Arctic—have been studied. The foraminifera assemblages show three characteristic assemblages from the two fjords’ glacial proximal, middle and distal ...
Debolina Chatterjee, Anupam Ghosh
doaj   +1 more source

Identification of soundscape components and their temporal patterns in Kongsfjorden, Svalbard Archipelago

open access: yes, 2020
Time series measurements of ocean ambient sound were carried out using an autonomous passive acoustic measurement system deployed in Kongsfjorden, Arctic Ocean, between July 2015 and April 2016. Geophysical soundscape components, particularly that of sea
Thirunavukkarasu, A.   +4 more
core   +1 more source

Pelagic community production and carbon-nutrient stoichiometry under variable ocean acidification in an Arctic fjord [PDF]

open access: yes, 2013
Net community production (NCP) and carbon to nutrient uptake ratios were studied during a large-scale mesocosm experiment on ocean acidification in Kongsfjorden, western Svalbard, during June–July 2010. Nutrient depleted fjord water with natural plankton
Tanaka, T   +44 more
core   +2 more sources

Seasonal data on Rose Bengal stained foraminifera in the head of Kongsfjorden, Svalbard

open access: yesData in Brief, 2019
Current ‘Atlantification’ of the Arctic Ocean affects benthic communities leading to the changes in their structure and abundance. Such areas as Svalbard that are seasonally affected by Atlantic and Arctic water masses may give a possibility to ...
Olga Kniazeva, Sergei Korsun
doaj   +1 more source

Multi-year particle fluxes in Kongsfjorden, Svalbard [PDF]

open access: yesBiogeosciences, 2018
High-latitude regions are warming faster than other areas due to reduction of snow cover and sea ice loss and changes in atmospheric and ocean circulation.
A. D'Angelo   +9 more
doaj   +1 more source

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