Geophysical Research Letters · 2019 · 33 citations · 49 references
EngineeringFe FertilizationTrace Element GeochemistryAir QualityMarine ChemistrySilicate ContentEarth ScienceEnvironmental ChemistryEnvironmental GeochemistryAtmospheric ScienceWeatheringOceanic SystemsBiogeochemistryAerosol FormationCo 2Primary FeTerrestrial GeochemistrySedimentologyGeochemistryAir PollutionCoastal Geochemistry
Abstract The speciation of iron (Fe) reaching the ocean, for instance in wind‐blown dust and coastal sediments, impacts its bioavailability to phytoplankton and its impact on atmospheric carbon dioxide (CO 2 ) and climate. For dust reaching the Southern Ocean, primary Fe(II) silicates that are physically weathered from bedrock are highly bioavailable compared to more chemically weathered, Fe(III)‐rich species, suggesting that weathering in dust source regions impacts the bioavailable Fe supply. However, this phenomenon has not been studied in other important terrestrial Fe sources, where weathering regimes and source geology vary. Here, we use Fe X‐ray absorption spectroscopy on marine sediment cores to show that major global dust and sediment sources impacted by high physical weathering contain abundant primary minerals and thus are overlooked as a source of highly bioavailable Fe globally. Thus, it is important to consider the role of physical versus chemical weathering in Fe fertilization and biotic CO 2 cycling.
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Onset of Asian desertification by 22 Myr ago inferred from loess deposits in China
Zhengtang Guo, William F Ruddiman, Qingzhen Hao et al. · Nature · 2002 · 1.8K citations