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Nitrifier denitrification as a distinct and significant source of nitrous oxide from soil.

机译:硝化剂反硝化是土壤中一氧化二氮的重要来源。

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Soils are the major source of the greenhouse gas nitrous oxide (N2O) to our atmosphere. A thorough understanding of terrestrial N2O production is therefore essential. N2O can be produced by nitrifiers, denitrifiers, and by nitrifiers paradoxically denitrifying. The latter pathway, though well-known in pure culture, has only recently been demonstrated in soils. Moreover, nitrifier denitrification appeared to be much less important than classical nitrate-driven denitrification. Here we studied a poor sandy soil, and show that when moisture conditions are sub-optimal for denitrification, nitrifier denitrification can be a major contributor to N2O emission from this soil. We conclude that the relative importance of classical and nitrifier denitrification in N2O emitted from soil is a function of the soil moisture content, and likely of other environmental conditions as well. Accordingly, we suggest that nitrifier denitrification should be routinely considered as a major source of N2O from soil.
机译:土壤是排放到我们大气中的温室气体一氧化二氮(N 2 O)的主要来源。因此,对陆地N 2 O产生的透彻了解至关重要。 N 2 O可以通过硝化器,反硝化器和反硝化的硝化器产生。后者虽然在纯培养中是众所周知的,但直到最近才在土壤中得到证实。此外,硝化器反硝化作用似乎不如传统的硝酸盐驱动的反硝化作用重要。在这里,我们研究了一种贫瘠的沙质土壤,结果表明,当水分条件对于反硝化作用而言不是最佳条件时,硝化器的反硝化作用可能是导致该土壤N 2 O排放的主要因素。我们得出结论,土壤中排放的N 2 O中经典和硝化反硝化的相对重要性是土壤水分含量的函数,也可能是其他环境条件的函数。因此,我们建议常规认为硝化器反硝化是土壤中N 2 O的主要来源。

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