The apparent iron solubility calculated from ambient temperature, pH and dissolved organic carbon in the Atlantic and Pacific oceans

Iron (Fe) is an important limiting nutrient in the marine environment constraining primary production across much of the ocean due to its sparse solubility in seawater. Iron availability regulates the magnitude and dynamics of ocean primary productivity, and is dependent on Fe solubility and speciation in seawater which in turn are influenced by physico-chemical properties such as pH, temperature, dissolved organic material. In this study, the apparent iron solubility (SFe(III)app) is calculated in an oversaturated system by setting an input of dissolved Fe(III) to 10 nmol L-1, at ambient ocean pH, temperature and dissolved organic carbon concentrations. This will result in the precipitation of Fe hydroxide, as ferrihydrite assumed in our system. The SFe(III)app is defined as the sum of aqueous inorganic Fe(III) species and Fe(III) bound to DOM, formed at a free Fe (Fe3+) concentration equal to the limiting solubility of Fe hydroxide (Fe(OH)3(s)). We compared calculated apparent iron solubility to measured dissolved iron concentrations (dFe) from three GEOTRACES cruises in the Atlantic and Pacific oceans. I aim to build a comprehensive picture on Fe speciation and dFe inventory in the ambient oceanic water column, with further feedbacks on primary productivity.

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Cite this as

Zhu, Kechen, Achterberg, Eric Pieter, Bates, Nicolas R, Gerringa, Loes, Middag, Rob, Hopwood, Mark James, Gledhill, Martha (2022). Dataset: The apparent iron solubility calculated from ambient temperature, pH and dissolved organic carbon in the Atlantic and Pacific oceans. https://doi.org/10.1594/PANGAEA.952541

DOI retrieved: 2022

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.952541
Author Zhu, Kechen
Given Name Kechen
Family Name Zhu
More Authors
Achterberg, Eric Pieter
Bates, Nicolas R
Gerringa, Loes
Middag, Rob
Hopwood, Mark James
Gledhill, Martha
Source Creation 2022
Publication Year 2022
Resource Type text/tab-separated-values - filename: Zhu-etal_2022
Subject Areas
Name: Atmosphere

Name: Ecology

Name: Lithosphere

Related Identifiers
Title: Influence of Changes in pH and Temperature on the Distribution of Apparent Iron Solubility in the Oceans
Identifier: https://doi.org/10.1029/2022GB007617
Type: DOI
Relation: References
Year: 2023
Source: Global Biogeochemical Cycles
Authors: Zhu Kechen , Gerringa Loes J A , Middag Rob , Hopwood Mark James , Gledhill Martha .