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Meta-Analysis of Environmental Impacts on Nitrous Oxide Release in Response to N Amendment

机译:荟萃分析环境对氮素修正释放一氧化二氮的影响

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摘要

Atmospheric nitrous oxide (N2O) accounts for approximately 5% of the global greenhouse effect and destroys stratospheric ozone. Soils are the most important source of N2O, which is produced during nitrification and denitrification. To assess the impact of environmental variables and ecosystems on N2O flux, we performed a meta-analysis comparing N2O flux in N amended and matched control plots in non-agricultural soils. We found that N2O release increased with N amendment in the short term. Although there were few studies in shrubland, this ecosystem showed the greatest response. The N2O response to N amendment was greater in year-round studies and in studies with more measurements, but lower in longer studies. The N2O response was greater at higher latitudes and precipitation rates. We also observed an unexpected 55% decline in the N2O response to N amendment over the 23 years covered by the studies. This pattern may reflect a suppression of the N2O response from long-term N deposition accumulation, particularly in temperate regions. Although short term increases in reactive N entering natural systems may cause positive feedbacks to the release of N2O, this effect may diminish over time in locations with high rates of N deposition.
机译:大气中的一氧化二氮(N2O)约占全球温室效应的5%,并会破坏平流层中的臭氧。土壤是N2O的最重要来源,N2O是在硝化和反硝化过程中产生的。为了评估环境变量和生态系统对N2O通量的影响,我们进行了荟萃分析,比较了非农业土壤中N个修正和匹配的控制区中N2O通量。我们发现,短期内随着N的修正,N2O释放量增加。尽管灌木丛中的研究很少,但这种生态系统显示出最大的响应。 N2O对N修正的响应在全年研究和具有更多测量值的研究中较高,而在较长研究中较低。在较高的纬度和降水率下,N2O响应更大。我们还观察到在研究涵盖的23年中,N2O对N修正的响应出乎意料地下降了55%。这种模式可能反映了长期N沉积累积(特别是在温带地区)对N2O响应的抑制。尽管进入自然系统的反应性N的短期增加可能导致对N 2 O释放的正反馈,但是在N沉积速率较高的位置,这种影响可能会随着时间的推移而减弱。

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