Iron can be a growth‐limiting nutrient for phytoplankton, modifying rates of net primary production, nitrogen fixation, and carbon export ‐ highlighting the importance of new iron inputs from the atmosphere. The bioavailable iron fraction depends on the emission source and the dissolution during transport. The impacts of anthropogenic combustion and land use change on emissions from industrial, domestic, shipping, desert, and wildfire sources suggest that Northern Hemisphere soluble iron deposition has likely been enhanced between 2% and 68% over the Industrial Era. If policy and climate follow the intermediate Representative Concentration Pathway 4.5 trajectory, then results suggest that Southern Ocean (>30°S) soluble iron deposition would...
Nutrients are supplied to the mixed layer of the open ocean by either atmospheric deposition or mixi...
Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron limits mar...
<div><p>Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron li...
Iron can be a growth‐limiting nutrient for phytoplankton, modifying rates of net primary production,...
Iron can be a growth‐limiting nutrient for phytoplankton, modifying rates of net primary production,...
We present results from transient sensitivity studies with the Biogeochemical Elemental Cycling (BEC...
International audienceDust deposition of iron is thought to be an important control on ocean biogeoc...
Nutrients are supplied to the mixed layer of the open ocean by either atmospheric deposition or mixi...
Dissolved iron is an essential micronutrient for marine phytoplankton, and its availability has cont...
The ocean contains about 50 times the amount of carbon in the atmosphere, and currently takes up ab...
Dust is produced primarily in desert regions and transported long distances through the atmosphere t...
Total and soluble iron modulate ocean biogeochemistry and global nitrogen and carbon cycle in over 4...
International audienceEarth System Models project that global climate change will reduce ocean net p...
The deposition of atmospheric iron to iron-limited ocean waters around Australia and Antarctica can ...
We investigated the simulated iron budget in ocean surface waters in the 1990s and 2090s using the C...
Nutrients are supplied to the mixed layer of the open ocean by either atmospheric deposition or mixi...
Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron limits mar...
<div><p>Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron li...
Iron can be a growth‐limiting nutrient for phytoplankton, modifying rates of net primary production,...
Iron can be a growth‐limiting nutrient for phytoplankton, modifying rates of net primary production,...
We present results from transient sensitivity studies with the Biogeochemical Elemental Cycling (BEC...
International audienceDust deposition of iron is thought to be an important control on ocean biogeoc...
Nutrients are supplied to the mixed layer of the open ocean by either atmospheric deposition or mixi...
Dissolved iron is an essential micronutrient for marine phytoplankton, and its availability has cont...
The ocean contains about 50 times the amount of carbon in the atmosphere, and currently takes up ab...
Dust is produced primarily in desert regions and transported long distances through the atmosphere t...
Total and soluble iron modulate ocean biogeochemistry and global nitrogen and carbon cycle in over 4...
International audienceEarth System Models project that global climate change will reduce ocean net p...
The deposition of atmospheric iron to iron-limited ocean waters around Australia and Antarctica can ...
We investigated the simulated iron budget in ocean surface waters in the 1990s and 2090s using the C...
Nutrients are supplied to the mixed layer of the open ocean by either atmospheric deposition or mixi...
Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron limits mar...
<div><p>Although iron is the fourth most abundant element in the Earth's crust, bioavailable iron li...