[HTML][HTML] Climate effects on temporal and spatial dynamics of phytoplankton and zooplankton in the Barents Sea

P Dalpadado, KR Arrigo, GL van Dijken… - Progress in …, 2020 - Elsevier
Temporal and spatial dynamics of phytoplankton and zooplankton in the Barents Sea have
been investigated during the last three decades using remote sensing and in situ …

[HTML][HTML] Assessing net primary production in the northwestern Barents Sea using in situ, remote sensing and modelling approaches

LC de la Guardia, TH Fariñas, C Marchese… - Progress in …, 2023 - Elsevier
Abstract The northwestern Barents Sea (NW-BS) is a highly productive region within the
transitional zones of an Atlantic to Arctic-dominated marine ecosystem. The steep latitudinal …

[HTML][HTML] Arctic Ocean uptake: an improved multiyear estimate of the air–sea flux incorporating chlorophyll  concentrations

S Yasunaka, E Siswanto, A Olsen, M Hoppema… - …, 2018 - bg.copernicus.org
We estimated monthly air–sea CO 2 fluxes in the Arctic Ocean and its adjacent seas north of
60∘ N from 1997 to 2014. This was done by mapping partial pressure of CO 2 in the surface …

Green Edge ice camp campaigns: understanding the processes controlling the under-ice Arctic phytoplankton spring bloom

P Massicotte, R Amiraux, MP Amyot… - Earth System …, 2020 - essd.copernicus.org
The Green Edge initiative was developed to investigate the processes controlling the
primary productivity and fate of organic matter produced during the Arctic phytoplankton …

[HTML][HTML] Seasonal plankton dynamics in Kongsfjorden during two years of contrasting environmental conditions

P Assmy, AC Kvernvik, H Hop, CJM Hoppe… - Progress in …, 2023 - Elsevier
Seasonal plankton time-series data are presented from Kongsfjorden from two years with
contrasting environmental conditions. Kongsfjorden (west coast of Spitsbergen–79° N) …

[HTML][HTML] From winter to late summer in the northwestern Barents Sea shelf: Impacts of seasonal progression of sea ice and upper ocean on nutrient and phytoplankton …

Z Koenig, M Muilwijk, H Sandven… - Progress in …, 2024 - Elsevier
Strong seasonality is a key feature of high-latitude systems like the Barents Sea. While the
interannual variability and long-term changes of the Barents Sea are well-documented, the …

[HTML][HTML] Hydrography, inorganic nutrients and chlorophyll a linked to sea ice cover in the Atlantic Water inflow region north of Svalbard

AHH Renner, A Bailey, M Reigstad, A Sundfjord… - Progress in …, 2023 - Elsevier
Abstract Changes in the inflow of Atlantic Water (AW) and its properties to the Arctic Ocean
bring more warm water, contribute to sea ice decline, promote borealisation of marine …

[HTML][HTML] The summer bacterial and archaeal community composition of the northern Barents Sea

S Thiele, A Vader, S Thomson, K Saubrekka… - Progress in …, 2023 - Elsevier
Climate change related alterations in the Arctic have influences on the marine ecosystems,
in particular on phytoplankton bloom dynamics. Since phytoplankton blooms are the main …

The advective origin of an under-ice spring bloom in the Arctic Ocean using multiple observational platforms

G Johnsen, M Norli, M Moline, I Robbins… - Polar biology, 2018 - Springer
Under-ice blooms of phytoplankton in the Chukchi Sea have been observed, with strong
implications for our understanding of the production regimes in the Arctic Ocean. Using a …

[HTML][HTML] Concentrations of dissolved dimethyl sulfide (DMS), methanethiol and other trace gases in context of microbial communities from the temperate Atlantic to the …

V Gros, B Bonsang, R Sarda-Estève… - …, 2023 - bg.copernicus.org
Dimethyl sulfide (DMS) plays an important role in the atmosphere by influencing the
formation of aerosols and cloud condensation nuclei. In contrast, the role of methanethiol …