Quantification of global and national nitrogen budgets for crop production

Input-output estimates of nitrogen on cropland are essential for improving nitrogen management and better understanding the global nitrogen cycle. Here, we compare 13 nitrogen budget datasets covering 115 countries and regions over 1961-2015. Although most datasets showed similar spatiotemporal patt...

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Published inNature food Vol. 2; no. 7; p. 529
Main Authors Zhang, Xin, Zou, Tan, Lassaletta, Luis, Mueller, Nathaniel D, Tubiello, Francesco N, Lisk, Matthew D, Lu, Chaoqun, Conant, Richard T, Dorich, Christopher D, Gerber, James, Tian, Hanqin, Bruulsema, Tom, Maaz, Tai McClellan, Nishina, Kazuya, Bodirsky, Benjamin Leon, Popp, Alexander, Bouwman, Lex, Beusen, Arthur, Chang, Jinfeng, Havlík, Petr, Leclère, David, Canadell, Josep G, Jackson, Robert B, Heffer, Patrick, Wanner, Nathan, Zhang, Weifeng, Davidson, Eric A
Format Journal Article
LanguageEnglish
Published England 01.07.2021
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Abstract Input-output estimates of nitrogen on cropland are essential for improving nitrogen management and better understanding the global nitrogen cycle. Here, we compare 13 nitrogen budget datasets covering 115 countries and regions over 1961-2015. Although most datasets showed similar spatiotemporal patterns, some annual estimates varied widely among them, resulting in large ranges and uncertainty. In 2010, global medians (in TgN yr ) and associated minimum-maximum ranges were 73 (64-84) for global harvested crop nitrogen; 161 (139-192) for total nitrogen inputs; 86 (68-97) for nitrogen surplus; and 46% (40-53%) for nitrogen use efficiency. Some of the most uncertain nitrogen budget terms by country showed ranges as large as their medians, revealing areas for improvement. A benchmark nitrogen budget dataset, derived from central tendencies of the original datasets, can be used in model comparisons and inform sustainable nitrogen management in food systems.
AbstractList Input-output estimates of nitrogen on cropland are essential for improving nitrogen management and better understanding the global nitrogen cycle. Here, we compare 13 nitrogen budget datasets covering 115 countries and regions over 1961-2015. Although most datasets showed similar spatiotemporal patterns, some annual estimates varied widely among them, resulting in large ranges and uncertainty. In 2010, global medians (in TgN yr ) and associated minimum-maximum ranges were 73 (64-84) for global harvested crop nitrogen; 161 (139-192) for total nitrogen inputs; 86 (68-97) for nitrogen surplus; and 46% (40-53%) for nitrogen use efficiency. Some of the most uncertain nitrogen budget terms by country showed ranges as large as their medians, revealing areas for improvement. A benchmark nitrogen budget dataset, derived from central tendencies of the original datasets, can be used in model comparisons and inform sustainable nitrogen management in food systems.
Author Mueller, Nathaniel D
Tian, Hanqin
Lisk, Matthew D
Leclère, David
Wanner, Nathan
Conant, Richard T
Beusen, Arthur
Dorich, Christopher D
Maaz, Tai McClellan
Chang, Jinfeng
Davidson, Eric A
Lu, Chaoqun
Popp, Alexander
Jackson, Robert B
Zhang, Xin
Tubiello, Francesco N
Gerber, James
Bodirsky, Benjamin Leon
Bouwman, Lex
Bruulsema, Tom
Zou, Tan
Nishina, Kazuya
Canadell, Josep G
Havlík, Petr
Lassaletta, Luis
Heffer, Patrick
Zhang, Weifeng
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  organization: Iowa State University, Ames, IA, USA
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  organization: Natural Resource Ecology Laboratory, Colorado State University, Fort Collins, CO, USA
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  fullname: Dorich, Christopher D
  organization: Natural Resource Ecology Laboratory, Colorado State University, Fort Collins, CO, USA
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  surname: Gerber
  fullname: Gerber, James
  organization: Institute on the Environment, University of Minnesota, Minneapolis, MN, USA
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  orcidid: 0000-0002-4776-1769
  surname: Maaz
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  organization: Department of Crop and Soil Sciences, Washington State University, Seattle, WA, USA
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  surname: Nishina
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  organization: National Institute for Environmental Studies, Tsukuba, Japan
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  orcidid: 0000-0002-8242-6712
  surname: Bodirsky
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  organization: Potsdam Institute for Climate Impact Research, Member of the Leibniz Association, Potsdam, Germany
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  organization: Potsdam Institute for Climate Impact Research, Member of the Leibniz Association, Potsdam, Germany
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  organization: Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao, China
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  orcidid: 0000-0003-0104-8615
  surname: Beusen
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  organization: Department of Earth Sciences-Geochemistry, Faculty of Geosciences, Utrecht University, Utrecht, The Netherlands
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  orcidid: 0000-0003-4463-7778
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  organization: Department of Earth System Science, Stanford University, Stanford, CA, USA
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  organization: International Fertilizer Association, Paris, France
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  email: edavidson@umces.edu
  organization: Appalachian Laboratory, University of Maryland Center for Environmental Science, Frostburg, MD, USA. edavidson@umces.edu
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Snippet Input-output estimates of nitrogen on cropland are essential for improving nitrogen management and better understanding the global nitrogen cycle. Here, we...
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Title Quantification of global and national nitrogen budgets for crop production
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