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首页> 外文期刊>Soil Biology & Biochemistry >Isotopologue fractionation during microbial reduction of N2O within soil mesocosms as a function of water-filled pore space
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Isotopologue fractionation during microbial reduction of N2O within soil mesocosms as a function of water-filled pore space

机译:土壤中层土壤中N2O微生物还原过程中的同位素同位素分馏与充满水的孔隙空间的关系

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摘要

Isotopologue analyses of N2O within soil mesocosm experiments were used to evaluate the influence of N2O reduction on isotope fractionation. We investigated fractionation during N2O reduction at 60%, 80% and 100% water-filled pore space (WFPS) and found net isotope effects (NIE) for t15N of 4.2-7.8 per thousand, t18O of 12.5-19.1 per thousand, t15Nl of 6.4-9.7 per thousand and t15No of 2.0-5.9[per thousand]. Consequently, N2O reduction has a marked affect on isotopologue values and the importance of this process in flux chamber studies should not be ignored. With the exception of SP (the difference between the t15N of the central, l, and terminal, o, atoms) inverse relationships between the NIE, reaction rate and reaction rate constant and WFPS were observed. Isotopic discrimination in SP during N2O reduction was small and the average NIE for the treatments varied between 2.9 per thousand and 4.5 per thousand. A strong correlation was evident between t18O vs. t15N and t18O vs. t15Nl during reduction with slopes of 2.6 and 1.9, respectively, which contrasts from a slope of <1 commonly observed for mixing between soil-derived and atmospheric N2O in flux chambers.
机译:在土壤中观实验中对N2O进行同位素同位素分析,以评估N2O还原对同位素分馏的影响。我们研究了在60%,80%和100%充满水的孔隙空间(WFPS)中N2O还原过程中的分级分离,发现t15N的净同位素效应(NIE)为4.2-7.8 /千,t18O为12.5-19.1 /千,t15Nl为千分之6.4-9.7,t15的百分位数为2.0-5.9 [千]。因此,一氧化二氮的减少对同位素同位素值有显着影响,这一过程在通量腔研究中的重要性不容忽视。除了SP(中心原子,l和末端o原子的t15N之间的差异)外,NIE,反应速率和反应速率常数与WFPS之间呈反比关系。在减少N2O的过程中,SP中的同位素歧视很小,处理的平均NIE在2.9 /千至4.5 /千之间。在还原过程中,t18O与t15N和t18O与t15Nl之间存在明显的相关性,其斜率分别为2.6和1.9,这与通量室内土壤衍生的N2O和大气N2O混合时通常观察到的<1的斜率形成对比。

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