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SCHOLARLY PUBLICATION ✓ Open Access

Global distribution of atmospheric phosphorus sources, concentrations and deposition rates, and anthropogenic impacts

N. M. Mahowald, T. D. Jickells, Alex R. Baker, Paulo Eduardo Artaxo, Claudia R. Benitez‐Nelson, G. Bergametti, Tami C. Bond, Ying Chen, David Damien Cohen, Barak Herut, N. Kubilay, R. Losno, Chao Luo, Willy Maenhaut, K. A. McGee, Gregory Stewart Okin, Ronald L. Siefert, Seigen Tsukuda

📄 Abstract

A worldwide compilation of atmospheric total phosphorus (TP) and phosphate (PO 4 ) concentration and deposition flux observations are combined with transport model simulations to derive the global distribution of concentrations and deposition fluxes of TP and PO 4 . Our results suggest that mineral aerosols are the dominant source of TP on a global scale (82%), with primary biogenic particles (12%) and combustion sources (5%) important in nondusty regions. Globally averaged anthropogenic inputs are estimated to be ∼5 and 15% for TP and PO 4 , respectively, and may contribute as much as 50% to the deposition over the oligotrophic ocean where productivity may be phosphorus‐limited. There is a net loss of TP from many (but not all) land ecosystems and a net gain of TP by the oceans (560 Gg P a −1 ). More measurements of atmospheric TP and PO 4 will assist in reducing uncertainties in our understanding of the role that atmospheric phosphorus may play in global biogeochemistry.

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