Dissemin is shutting down on January 1st, 2025

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Nature Research, Nature Geoscience, 1(8), p. 48-54, 2014

DOI: 10.1038/ngeo2324

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Significant contribution of combustion-related emissions to the atmospheric phosphorus budget

This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

Atmospheric phosphorus fertilizes plants and contributes to Earth/'s biogeochemical phosphorus cycle. However, calculations of the global budget of atmospheric phosphorus have been unbalanced, with global deposition exceeding estimated emissions from dust and sea-salt transport, volcanic eruptions, biogenic sources and combustion of fossil fuels, biofuels and biomass, the latter of which thought to contribute about 5% of total emissions. Here we use measurements of the phosphorus content of various fuels and estimates of the partitioning of phosphorus during combustion to calculate phosphorus emissions to the atmosphere from all combustion sources. We estimate combustion-related emissions of 1.8 Tg P yr-1, which represent over 50% of global atmospheric sources of phosphorus. Using these estimates in atmospheric transport model simulations, we find that the total global emissions of atmospheric phosphorus (3.5 Tg P yr-1) translate to a depositional sink of 2.7 Tg P yr-1 over land and 0.8 Tg P yr-1 over