The Southern Ocean plays a critical role in regulating global climate as a major sink for atmospheric carbon dioxide (CO2), and in global ocean biogeochemistry by supplying nutrients to the global thermocline, thereby influencing global primary production and carbon export. Biogeochemical processes within the Southern Ocean regulate regional primary production and biological carbon uptake, primarily through iron supply, and support ecosystem functioning over a range of spatial and temporal scales. Here, we assimilate existing knowledge and present new data to examine the biogeochemical cycles of iron, carbon and major nutrients, their key drivers and their responses to, and roles in, contemporary climate and environmental change. Projected ...
The Southern Ocean exerts a strong impact on marine biogeochemical cycles and global air-sea CO2 flu...
In many regions of the Southern Ocean, surface concentrations of the trace metal iron are very low. ...
Biogeochemical cycling in the Southern Ocean (SO) plays a key role in the global sea-air CO2balance ...
The Southern Ocean plays a critical role in regulating global climate as a major sink for atmospheri...
Within the framework of the Marine Ecosystem Assessment for the Southern Ocean (MEASO), this paper b...
© 2016 Elsevier GmbH The Southern Ocean (SO) is a major sink for anthropogenic atmospheric carbon di...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological...
Phytoplankton are the base of the Antarctic food web, sustain the wealth and diversity of life for w...
Author Posting. © American Geophysical Union, 2009. This article is posted here by permission of Am...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological ...
Copyright © 2020 Morley, Abele, Barnes, Cárdenas, Cotté, Gutt, Henley, Höfer, Hughes, Martin, Moffat...
The manuscript assesses the current and expected future global drivers of Southern Ocean (SO) ecosys...
Phytoplankton exert a significant control on the marine carbon cycle and can thus impact atmospheric...
Southern Ocean phytoplankton have been shown to overcome the low light and low iron (Fe) environment...
Phytoplankton inhabit the largest biome on the planet, span all biogeographic provinces of the ocean...
The Southern Ocean exerts a strong impact on marine biogeochemical cycles and global air-sea CO2 flu...
In many regions of the Southern Ocean, surface concentrations of the trace metal iron are very low. ...
Biogeochemical cycling in the Southern Ocean (SO) plays a key role in the global sea-air CO2balance ...
The Southern Ocean plays a critical role in regulating global climate as a major sink for atmospheri...
Within the framework of the Marine Ecosystem Assessment for the Southern Ocean (MEASO), this paper b...
© 2016 Elsevier GmbH The Southern Ocean (SO) is a major sink for anthropogenic atmospheric carbon di...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological...
Phytoplankton are the base of the Antarctic food web, sustain the wealth and diversity of life for w...
Author Posting. © American Geophysical Union, 2009. This article is posted here by permission of Am...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological ...
Copyright © 2020 Morley, Abele, Barnes, Cárdenas, Cotté, Gutt, Henley, Höfer, Hughes, Martin, Moffat...
The manuscript assesses the current and expected future global drivers of Southern Ocean (SO) ecosys...
Phytoplankton exert a significant control on the marine carbon cycle and can thus impact atmospheric...
Southern Ocean phytoplankton have been shown to overcome the low light and low iron (Fe) environment...
Phytoplankton inhabit the largest biome on the planet, span all biogeographic provinces of the ocean...
The Southern Ocean exerts a strong impact on marine biogeochemical cycles and global air-sea CO2 flu...
In many regions of the Southern Ocean, surface concentrations of the trace metal iron are very low. ...
Biogeochemical cycling in the Southern Ocean (SO) plays a key role in the global sea-air CO2balance ...