Impacts of atmospheric nutrient deposition on marine productivity: Roles of nitrogen, phosphorus, and iron
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- Type
- article
- Published
- 2011-06-01
- Cited by
- 226
- References
- 61
- Access
- Open access
- OpenAlex
- https://openalex.org/W1856466342
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21958966
Keywords
Phosphorus, Nutrient, Nitrogen, Productivity, Deposition (geology)
References
- Impacts of increasing anthropogenic soluble iron and nitrogen deposition on ocean biogeochemistry
- Historical emissions of black and organic carbon aerosol from energy‐related combustion, 1850–2000
- Phosphorus limitation of nitrogen fixation by Trichodesmium in the central Atlantic Ocean
- Patterns of nitrogen fixation along 10°N in the tropical Atlantic
- Combustion iron distribution and deposition
- What does temporal variability in aeolian dust deposition contribute to sea‐surface iron and chlorophyll distributions?
- Atmospheric global dust cycle and iron inputs to the ocean
- Iron and phosphorus co-limit nitrogen fixation in the eastern tropical North Atlantic
- Atmospheric and marine controls on aerosol iron solubility in seawater
- Aerosol iron solubility over Bay of Bengal: Role of anthropogenic sources and chemical processing
- Nitrogen, Phosphorus, and Eutrophication in the Coastal Marine Environment
- Spatial coupling of nitrogen inputs and losses in the ocean
- Dry and wet deposition of nutrients from the tropical Atlantic atmosphere: Links to primary productivity and nitrogen fixation
- Remobilization of southern African desert dune systems by twenty-first century global warming
- Impacts of Atmospheric Anthropogenic Nitrogen on the Open Ocean
- Phase partitioning and dry deposition of atmospheric nitrogen at the mid‐Atlantic U.S. coast
- An intermediate complexity marine ecosystem model for the global domain
- A REVISED ESTIMATE OF THE IRON USE EFFICIENCY OF NITROGEN FIXATION, WITH SPECIAL REFERENCE TO THE MARINE CYANOBACTERIUM TRICHODESMIUM SPP. (CYANOPHYTA) 1
- Impact of desert dust on the biogeochemistry of phosphorus in terrestrial ecosystems
- Testing the iron hypothesis in ecosystems of the equatorial Pacific Ocean
Cited by
- Atmospheric wet deposition of dissolved trace elements to Jiaozhou Bay, North China: Fluxes, sources and potential effects on aquatic environments.
- Chimie et dépôt de l'aérosol minéral en zone océanique australe
- An analysis of aeolian dust in climate models
- Potential dust emissions from the southern Kalahari's dunelands
- Box-modelling of the impacts of atmospheric nitrogen deposition and benthic remineralisation on the nitrogen cycle of the eastern tropical South Pacific
- Evaluating the balance between vertical diffusive nitrate supply and nitrogen fixation with reference to nitrate uptake in the eastern subtropical North Atlantic Ocean
- Centennial and Millennial climate-carbon cycle feedback analysis for future anthropogenic climate change
- The importance of atmospheric deposition for ocean productivity
- Atmospheric P deposition to the subtropical North Atlantic: sources, properties, and relationship to N deposition
- Soluble trace metals in aerosols over the tropical south-east Pacific offshore of Peru
- Antarctica's Dry Valleys: A potential source of soluble iron to the Southern Ocean?
- Estimation of the Atmospheric Flux of Nutrients and Trace Metals to the Eastern Tropical North Atlantic Ocean
- Importance of salt fingering for new nitrogen supply in the oligotrophic ocean
- Red-ox speciation and mixing state of iron in individual African dust particles
- Greenland ice cores constrain glacial atmospheric fluxes of phosphorus
- Atmospheric fluxes of organic N and P to the global ocean
- Atmospheric deposition of N, P and Fe to the Northern Indian Ocean: implications to C- and N-fixation.
- Impact of atmospheric nitrogen deposition on phytoplankton productivity in the South China Sea
- Chemical characteristics of PM(2.5) at a source region of biomass burning emissions: evidence for secondary aerosol formation.
- Changes in dissolved iron deposition to the oceans driven by human activity: a 3-D global modelling study
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