Current state and future scenarios of the global agricultural nitrogen cycle

Author:

Bodirsky B. L.,Popp A.,Weindl I.,Dietrich J. P.,Rolinski S.,Scheiffele L.,Schmitz C.,Lotze-Campen H.

Abstract

Abstract. Reactive nitrogen (Nr) is not only an important nutrient for plant growth, thereby safeguarding human alimentation, but it also heavily disturbs natural systems. To mitigate air, land, aquatic, and atmospheric pollution caused by the excessive availability of Nr, it is crucial to understand the long term development of the global agricultural Nr cycle. For our analysis, we combine a material flow model with a land-use-optimization model. In a first step we estimate the state of the Nr cycle in 1995. In a second step we create four scenarios for the 21st century in line with the SRES storylines. Our results indicate that in 1995 only half of the Nr applied to croplands was incorporated into cropland biomass. Moreover, less than 10 per cent of all Nr in cropland biomass and grazed pasture was consumed by humans. In our scenarios a strong surge of the Nr cycle occurs in the first half of the 21st century, even in the environmentally oriented scenarios. Nitrous oxide (N2O) emissions rise from 3 Tg N2O-N in 1995 to 7–9 in 2045 and 5–15 Tg in 2095. Reinforced Nr pollution mitigation efforts are therefore required.

Publisher

Copernicus GmbH

Reference69 articles.

1. Bondeau, A., Smith, P. C., Zaehle, S., Schaphoff, S., Lucht, W., Cramer, W., Gerten, D., Lotze-Campen, H., Müller, C., Reichstein, M., and Smith, B.: Modelling the role of agriculture for the 20th century global terrestrial carbon balance, Glob. Change Biol., 13, 679–706, 2007.

2. Bouwman, A. F., Van Drecht, G., and Van der Hoek, K. W.: Nitrogen surface balances in intensive agricultural production systems in different world regions for the period 1970–2030, Pedosphere, 15, 137–155, 2005.

3. Bouwman, A. F., Beusen, A., and Billen, G.: Human alteration of the global nitrogen and phosphorus soil balances for the period 1970–2050, Global Biogeochem. Cy., 23, 1–15 2009.

4. Bouwman, L., Goldewijk, K. K., Van Der Hoek, K. W., Beusen, A. H. W., Van Vuuren, D. P., Willems, J., Rufino, M. C., and Stehfest, E.: Exploring global changes in nitrogen and phosphorus cycles in agriculture induced by livestock production over the 1900–2050 period, Livestock and Global Change Special Feature of P. Natl. Acad. Sci., 1–6, 2011.

5. Boyer, E. W., Howarth, J., Dentener, F. J., Cleveland, C., Asner, G. P., Green, P., and Vörösmarty, C.: Current nitrogen inputs to world regions, in: Agriculture and the nitrogen cycle: assessing the impacts of fertilizer use on food production and the environment, 221–230, Island Press, Washington, DC, 2004.

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