Nitrogen–climate interactions in US agriculture

Author:

Robertson G. Philip,Bruulsema Tom W.,Gehl Ron J.,Kanter David,Mauzerall Denise L.,Rotz C. Alan,Williams Candiss O.

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Water Science and Technology,Environmental Chemistry

Reference184 articles.

1. Akiyama H, Yan XY, Yagi K (2010) Evaluation of effectiveness of enhanced-efficiency fertilizers as mitigation options for N2O and NO emissions from agricultural soils: meta-analysis. Glob Change Biol 16:1837–1846

2. Alberta Environment (2010) Quantification protocol for agricultural nitrous oxide emissions reductions. Government of Alberta, Canada. http://environment.gov.ab.ca/info/library/8294.pdf . Accessed 10 Feb 2012

3. Avnery S, Mauzerall DL, Liu J, Horowitz LW (2011a) Global crop yield reductions due to surface ozone exposure: 2. Year 2030 potential crop production losses and economic damage under two scenarios of O3 pollution. Atmos Environ 45:2297–2309

4. Avnery S, Mauzerall DL, Liu J, Horowitz LW (2011b) Global crop yield reductions due to surface ozone exposure: 1. Year 2000 crop production losses and economic damage. Atmos Environ 45:2284–2296

5. Barbarika A (2001) The Conservation Reserve Program: Program summary and enrollment statistics as of August 2001. U.S. Department of Agriculture, Farm Service Agency, Washington. http://www.fsa.usda.gov/Internet/FSA_File/fy2001.pdf . Accessed 28 Aug 2011

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