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Nitrous Oxide Emissions from Fertilized Soils: Summary of Available Data

Melissa J. Eichner

Open publisher page 521 citations

Abstract

Abstract Direct measurements of fertilizer‐derived N 2 O emission data from 104 field experiments reported in agriculture and soil science literature that were obtained between 1979 and 1987 were summarized and used to estimate worldwide fertilizer‐derived N 2 O emissions. Although without statistical determination, there appears to be a trend between emissions and type and quantity of fertilizer applied; the available data does not indicate a trend between emissions and a particular soil type or agriculture system. Using the fraction of the N fertilizer evolved as N 2 O and fertilizer consumption estimates for five fertilizer types, 0.1 to 1.0 Tg N 2 O‐N (avg. 0.3; median 0.2) were estimated to be released during the “sampling period.” If these estimates are doubled to account for emissions after the sampling period and emissions from fertilizer lost in drainage water and ground‐water, the expected range would be 0.2 to 2.1 Tg N 2 O‐N (avg. 0.7; median 0.5) emitted into the atmosphere in 1984. The magnitude of this estimate is in agreement with recent global estimates. If 100 Tg N fertilizer are consumed worldwide in the year 2000, the global release of fertilizer‐derived emissions into the atmosphere will probably not exceed 3 Tg N 2 O‐N in the year 2000. It is estimated that 23 to 315 Gg N 2 O‐N were emitted into the atmosphere from fields of cultivated leguminous crops in 1986. Future research needs were suggested.

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What this paper is about

Abstract Direct measurements of fertilizer‐derived N 2 O emission data from 104 field experiments reported in agriculture and soil science literature that were obtained between 1979 and 1987 were summarized and used to estimate worldwide fertilizer‐derived N 2 O emissions. Although without statistical determination, there appears to be a trend between emissions and type and quantity of fertilizer applied; the available data does not indicate a trend between emissions and a particular soil type or agriculture system. Using the fraction of the N fertilizer evolved as N 2 O and fertilizer consumption estimates for five fertilizer types, 0.1 to 1.0 Tg N 2 O‐N (avg. 0.3; median 0.2) were estimated to be released during the “sampling period.” If these estimates are doubled to account for emissions after the sampling period and emissions from fertilizer lost in drainage water and ground‐water, the expected range would be 0.2 to 2.1 Tg N 2 O‐N (avg. 0.7; median 0.5) emitted into the atmosphere in 1984. The magnitude of this estimate is in agreement with recent global estimates. If 100 Tg N fertilizer are consumed worldwide in the year 2000, the global release of fertilizer‐derived emissions into the atmosphere will probably not exceed 3 Tg N 2 O‐N in the year 2000. It is estimated that 23 to 315 Gg N 2 O‐N were emitted into the atmosphere from fields of cultivated leguminous crops in 1986. Future research needs were suggested.

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Available abstract

Abstract Direct measurements of fertilizer‐derived N 2 O emission data from 104 field experiments reported in agriculture and soil science literature that were obtained between 1979 and 1987 were summarized and used to estimate worldwide fertilizer‐derived N 2 O emissions. Although without statistical determination, there appears to be a trend between emissions and type and quantity of fertilizer applied; the available data does not indicate a trend between emissions and a particular soil type or agriculture system. Using the fraction of the N fertilizer evolved as N 2 O and fertilizer consumption estimates for five fertilizer types, 0.1 to 1.0 Tg N 2 O‐N (avg. 0.3; median 0.2) were estimated to be released during the “sampling period.” If these estimates are doubled to account for emissions after the sampling period and emissions from fertilizer lost in drainage water and ground‐water, the expected range would be 0.2 to 2.1 Tg N 2 O‐N (avg. 0.7; median 0.5) emitted into the atmosphere in 1984. The magnitude of this estimate is in agreement with recent global estimates. If 100 Tg N fertilizer are consumed worldwide in the year 2000, the global release of fertilizer‐derived emissions into the atmosphere will probably not exceed 3 Tg N 2 O‐N in the year 2000. It is estimated that 23 to 315 Gg N 2 O‐N were emitted into the atmosphere from fields of cultivated leguminous crops in 1986. Future research needs were suggested.

Key concepts: Fertilizer, Soil water, Environmental science, Atmosphere (unit), Nitrous oxide, Agriculture, Sampling (signal processing), Animal science

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