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Linking Annual N2O Emission in Organic Soils to Mineral Nitrogen Input as Estimated by Heterotrophic Respiration and Soil C/N Ratio

机译:异养呼吸和土壤碳氮比估计的有机土壤年N2O排放与矿物氮输入的联系

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摘要

Organic soils are an important source of N2O, but global estimates of these fluxes remain uncertain because measurements are sparse. We tested the hypothesis that N2O fluxes can be predicted from estimates of mineral nitrogen input, calculated from readily-available measurements of CO2 flux and soil C/N ratio. From studies of organic soils throughout the world, we compiled a data set of annual CO2 and N2O fluxes which were measured concurrently. The input of soil mineral nitrogen in these studies was estimated from applied fertilizer nitrogen and organic nitrogen mineralization. The latter was calculated by dividing the rate of soil heterotrophic respiration by soil C/N ratio. This index of mineral nitrogen input explained up to 69% of the overall variability of N2O fluxes, whereas CO2 flux or soil C/N ratio alone explained only 49% and 36% of the variability, respectively. Including water table level in the model, along with mineral nitrogen input, further improved the model with the explanatory proportion of variability in N2O flux increasing to 75%. Unlike grassland or cropland soils, forest soils were evidently nitrogen-limited, so water table level had no significant effect on N2O flux. Our proposed approach, which uses the product of soil-derived CO2 flux and the inverse of soil C/N ratio as a proxy for nitrogen mineralization, shows promise for estimating regional or global N2O fluxes from organic soils, although some further enhancements may be warranted.
机译:有机土壤是N2O的重要来源,但由于测量稀疏,因此对这些通量的总体估算仍不确定。我们检验了以下假设:可以根据对矿物氮输入的估算来预测N2O通量,而对矿物氮的输入量可以通过现成的CO2通量和土壤C / N比测量得出。通过对全球有机土壤的研究,我们汇编了同时测量的年度CO2和N2O通量的数据集。在这些研究中,土壤氮素的输入是通过施用肥料氮和有机氮矿化来估算的。后者的计算方法是将土壤异养呼吸速率除以土壤碳氮比。矿物氮输入的这一指标解释了N2O通量总体变化的69%,而单独的CO2通量或土壤C / N比仅解释了49%和36%的变化。在模型中包括地下水位和矿物质氮输入,进一步改善了模型,使N2O通量变化率的解释比例增加到75%。与草原或农田土壤不同,森林土壤明显受氮限制,因此地下水位对N2O通量没有显着影响。我们提出的方法使用土壤衍生的CO2通量和土壤C / N比值的倒数作为氮矿化的代用品,尽管有必要进一步增强,但仍有望估算有机土壤的区域或全球N2O通量。 。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(9),5
  • 年度 -1
  • 页码 e96572
  • 总页数 6
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:18:52

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