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Convergence in the relationship of CO2 and N2O exchanges between soil and atmosphere within terrestrial ecosystems

机译:陆地生态系统中土壤与大气之间的CO2和N2O交换关系趋同

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摘要

Ecosystem CO2 and N2O exchanges between soils and the atmosphere play an important role in climate warming and global carbon and nitrogen cycling; however, it is still not clear whether the fluxes of these two greenhouse gases are correlated at the ecosystem scale. We collected 143 pairs of ecosystem CO2 and N2O exchanges between soils and the atmosphere measured simultaneously in eight ecosystems around the world and developed relationships between soil CO2 and N2O fluxes. Significant linear regressions of soil CO2 and N2O fluxes were found for all eight ecosystems; the highest slope occurred in rice paddies and the lowest in temperate grasslands. We also found the dominant role of growing season on the relationship of annual CO2 and N2O fluxes. No significant relationship between soil CO2 and N2O fluxes was found across all eight ecosystem types. The estimated annual global N2O emission based on our findings is 13.31 Tg N yr?1 with a range of 8.19–18.43 Tg N yr?1 for 1980–2000, of which cropland contributes nearly 30%. Our findings demonstrated that stoichiometric relationships may work on ecological functions at the ecosystem level. The relationship of soil N2O and CO2 fluxes developed here could be helpful in biogeochemical modeling and large-scale estimations of soil CO2 and N2O fluxes.
机译:土壤与大气之间的生态系统CO2和N2O交换在气候变暖和全球碳氮循环中起着重要作用。然而,尚不清楚这两种温室气体的通量在生态系统规模上是否相关。我们收集了在全球八个生态系统中同时测量的土壤与大气之间的143对生态系统CO2和N2O交换,并建立了土壤CO2和N2O通量之间的关系。在所有八个生态系统中,土壤CO2和N2O通量均具有显着的线性回归。稻田的坡度最高,而温带草原的坡度最低。我们还发现生长季节对年度CO2和N2O通量的关系起主导作用。在所有八种生态系统类型中,均未发现土壤CO2和N2O通量之间存在显着关系。根据我们的发现,估计全球每年的N2O排放量为13.31 Tg N yr?1,1980-2000年的范围为8.19-18.43 Tg N yr?1,其中耕地占近30%。我们的发现表明,化学计量关系可能对生态系统水平的生态功能起作用。本文开发的土壤N2O和CO2通量的关系可能有助于生物地球化学建模和土壤CO2和N2O通量的大规模估算。

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