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Stable isotope discrimination during soil denitrification: Production and consumption of nitrous oxide

机译:土壤反硝化过程中同位素的稳定判别:一氧化二氮的产生和消耗

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Measuring the stable isotope composition of nitrous oxide ( N2O) evolved from soil could improve our understanding of the relative contributions of the main microbial processes ( nitrification and denitrification) responsible for N2O formation in soil. However, interpretation of the isotopic data in N2O is complicated by the lack of knowledge of fractionation parameters by different microbial processes responsible for N2O production and consumption. Here we report isotopic enrichment for both nitrogen and oxygen isotopes in two stages of denitrification, N2O production and N2O reduction. We found that during both N2O production and reduction, enrichments were higher for oxygen than nitrogen. For both elements, enrichments were larger for N2O production stage than for N2O reduction. During gross N2O production, the ratio of delta O-18- to-delta N-15 differed between soils, ranging from 1.6 to 2.7. By contrast, during N2O reduction, we observed a constant ratio of delta O-18- to-delta N-15 with a value near 2.5. If general, this ratio could be used to estimate the proportion of N2O being reduced in the soil before escaping into the atmosphere. Because N2O- reductase enriches N2O in both isotopes, the global reduction of N2O consumption by soil may contribute to the globally observed isotopic depletion of atmospheric N2O.
机译:测量从土壤中释放出来的一氧化二氮(N2O)的稳定同位素组成可以增进我们对造成土壤中N2O形成的主要微生物过程(硝化和反硝化)的相对贡献的了解。但是,由于缺乏负责N2O生产和消费的不同微生物过程的分馏参数知识,使得N2O中同位素数据的解释变得复杂。在这里,我们报告了在反硝化,N2O产生和N2O还原两个阶段中氮和氧同位素的同位素富集。我们发现,在N2O产生和还原过程中,氧的富集度都高于氮。对于这两种元素,N2O生产阶段的富集都比N2O还原的富集大。在N2O总产量中,土壤之间的O-18 / N-15比率不同,范围从1.6到2.7。相比之下,在减少N2O的过程中,我们观察到了δO-18与δN-15的恒定比率,其值接近2.5。如果一般的话,该比率可用于估算N2O在逃逸到大气中之前在土壤中还原的比例。由于N2O还原酶使两种同位素中的N2O富集,因此土壤N2O消耗的全球减少可能有助于全球观测到的大气N2O的同位素消耗。

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