
The Southern Ocean biological response to aeolian iron deposition
Biogeochemical rate processes in the Southern Ocean have an important impact on the global environment. Here, we summarize an extensive set of published and new data that establishes the pattern of gross primary production and net community production over large areas of the Southern Ocean. We compare these rates with model estimates of dissolved iron that is added to surface waters by aerosols. This comparison shows that net community production, which is comparable to export production, is proportional to modeled input of soluble iron in aerosols. Our results strengthen the evidence that the addition of aerosol iron fertilizes export production in the Southern Ocean. The data also show that aerosol iron input particularly enhances gross primary production over the large area of the Southern Ocean downwind of dry continental areas.
Duke Scholars
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- Wind
- Seawater
- Seasons
- Phytoplankton
- Oxygen
- Oceans and Seas
- Iron
- General Science & Technology
- Ecosystem
- Atmosphere
Citation

Published In
DOI
EISSN
ISSN
Publication Date
Volume
Issue
Start / End Page
Related Subject Headings
- Wind
- Seawater
- Seasons
- Phytoplankton
- Oxygen
- Oceans and Seas
- Iron
- General Science & Technology
- Ecosystem
- Atmosphere