[HTML][HTML] Quantifying zoobenthic blue carbon storage across habitats within the Arctic's Barents Sea

TA Souster, DKA Barnes, R Primicerio… - Frontiers in Marine …, 2024 - frontiersin.org
Arctic sea ice extent in September (when it is at its lowest) has declined 13% per decade
and the Arctic Ocean is becoming a more Atlantic influenced system. Rapid climate-forced …

Animal–Energy Relationships in a Changing Ocean: The Case of Continental Shelf Macrobenthic Communities on the Weddell Sea and the Vicinity of the Antarctic …

E Isla - Biology, 2023 - mdpi.com
Simple Summary Antarctic macrobenthic communities thriving on the continental shelf have
evolved over thousands of years in perhaps the coldest and most constant environmental …

Biological and Pollution Aerosols on Snow and Ice—Interplay between the Atmosphere and the Cryosphere

Z Dong, H Jiang, G Baccolo, B Di Mauro… - Journal of Earth …, 2023 - Springer
1 BACKGROUND The cryosphere covers a relevant portion of the Earth's surface, playing a
major role for terrestrial and marine biomes (Bosson et al., 2023; Sands et al., 2023; Anesio …

[HTML][HTML] Variability in Zoobenthic Blue Carbon Storage across a Southern Polar Gradient

BAV Frinault, DKA Barnes - Marine Environmental Research, 2024 - Elsevier
The seabed of the Antarctic continental shelf hosts most of Antarctica's known species,
including taxa considered indicative of vulnerable marine ecosystems (VMEs). Nonetheless …

Blue Carbon in a Sub-Antarctic Marine Protected Area: Current and Future Perspectives

L Bergagna, G Lovrich, L Riccialdelli, R Sahade - 2024 - researchsquare.com
Carbon fixation, storage, and eventual sequestration by marine ecosystems are known as
“blue carbon”. This carbon uptake by the oceanic biological pump reduces atmospheric …