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Global ammonia emissions from synthetic nitrogen fertilizer applications in agricultural systems: Empirical and process‐based estimates and uncertainty 원문보기

Global change biology, v.25 no.1, 2019년, pp.314 - 326  

Xu, Rongting (International Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, Alabama) ,  Tian, Hanqin (International Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, Alabama) ,  Pan, Shufen (International Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, Alabama) ,  Prior, Stephen A. (USDA‐) ,  Feng, Yucheng (ARS National Soil Dynamics Laboratory, Auburn, Alabama) ,  Batchelor, William D. (Department of Crop, Soil and Environmental Sciences, Auburn University, Auburn, Alabama) ,  Chen, Jian (Department of Biosystems Engineering, Auburn University, Auburn, Alabama) ,  Yang, Jia (International Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, Alabama)

Abstract AI-Helper 아이콘AI-Helper

AbstractExcessive ammonia (NH3) emitted from nitrogen (N) fertilizer applications in global croplands plays an important role in atmospheric aerosol production, resulting in visibility reduction and regional haze. However, large uncertainty exists in the estimates of NH3 emissions from global and re...

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