Pulse Brain · Growing Health Evidence Index
Peer-reviewed

Reductions in the deposition of sulfur and selenium to agricultural soils pose risk of future nutrient deficiencies

Aryeh Feinberg, Andrea Stenke, Thomas Peter, Eve‐Lyn S. Hinckley, Charles T. Driscoll, Lenny H. E. Winkel

Communications Earth & Environment · 2021

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Summary

Abstract Atmospheric deposition is a major source of the nutrients sulfur and selenium to agricultural soils. Air pollution control and cleaner energy production have reduced anthropogenic emissions of sulfur and selenium, which has led to lower atmospheric deposition fluxes of these elements. Here, we use a global aerosol-chemistry-climate model to map recent (2005–2009) sulfur and selenium deposition, and project future (2095–2099) changes under two socioeconomic scenarios. Across the Northern Hemisphere, we find substantially decreased deposition to agricultural soils, by 70 to 90% for sulfur and by 55 to 80% for selenium. Recent trends in sulfur and selenium concentrations in USA streams suggest that catchment mass balances of these elements are already changing due to the declining at

Subject
Micronutrients & dietary adequacy
Source type
Peer-reviewed study
System type
Other
DOI
10.1038/s43247-021-00172-0
Catalogue ID
SNmp4zkobu-kt1pvx
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