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Soil CN ratio as a scalar parameter to predict nitrous oxide emissions

机译:土壤CN比值作为预测一氧化二氮排放量的标量参数

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摘要

Forested histosols have been found in some cases to be major, and in other cases minor, sources of the greenhouse gas nitrous oxide (N2O). In order to estimate the total national or global emissions of N2O from histosols, scaling or mapping parameters that can separate low- and high-emitting sites are needed, and should be included in soil databases. Based on interannual measurements of N2O emissions from drained forested histosols in Sweden, we found a strong negative relationship between N2O emissions and soil CN ratios (r(adj)(2)=0.96, mean annual N2O emission=ae((-b CN ratio))). The same equation could be used to estimate the N2O emissions from Finnish and German sites based on CN ratios in published data. We envisage that the correlation between N2O emissions and CN ratios could be used to scale N2O emissions from histosols determined at sampled sites to national levels. However, at low CN ratios (i.e. below 15-20) other parameters such as climate, pH and groundwater tables increase in importance as regulating factors affecting N2O emissions.
机译:在某些情况下,发现有森林的组织溶胶是温室气体一氧化二氮(N2O)的主要来源,而在其他情况下则是次要的来源。为了估计组织溶胶在国家或全球范围内排放的N2O总量,需要能够将低排放位点和高排放位点分开的比例或制图参数,并将其包括在土壤数据库中。根据瑞典每年排放的林间土壤溶胶的N2O排放量的年度测量结果,我们发现N2O排放量与土壤CN比率之间存在强烈的负相关关系(r(adj)(2)= 0.96,年均N2O排放量= ae((-b CN比率) )))。根据已发布数据中的氯化萘比率,可以使用相同的方程式估算芬兰和德国工厂的一氧化二氮排放量。我们设想,N2O排放量与CN比率之间的相关性可用于将抽样地点确定的组织溶胶中的N2O排放量定为国家水平。但是,在低氯化物比率(即低于15-20)下,诸如气候,pH和地下水位等其他参数作为影响N2O排放的调节因素变得越来越重要。

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