Agricultural fertilization significantly enhances amplitude of land-atmosphere CO<sub>2</sub> exchange.

Lombardozzi, Danica L; Wieder, William R; Keppel-Aleks, Gretchen; Lai, Jiameng; Luo, Zhenqi; Sun, Ying; Simpson, Isla R; Lawrence, David M et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

Observations show an increase in the seasonal cycle amplitude of CO<sub>2</sub> in northern latitudes over the past half century. Although multiple drivers contribute, observations and inversion models cannot quantitatively account for the factors contributing to the increased CO<sub>2</sub> amplitude and older versions of Earth System Models (ESMs) do not simulate it. Here we show that several current generation ESMs are closer to the observed CO<sub>2</sub> amplitude and highlight that in the Community Earth System Model (CESM) agricultural nitrogen (N) fertilization increases CO<sub>2</sub> amplitude by 1-3 ppm throughout the Northern Hemisphere and up to 9 ppm in agricultural hotspots. While agricultural N fertilization is the largest contributor to the enhanced amplitude (45%) in Northern Hemisphere land-atmosphere carbon fluxes in CESM, higher CO<sub>2</sub> concentrations and warmer temperatures also contribute, though to a lesser extent (40% and 18% respectively). Our results emphasize the fundamental role of agricultural management in Northern Hemisphere carbon cycle feedbacks and illustrate that agricultural N fertilization should be considered in future carbon cycle simulations.