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首页> 外文期刊>Biology and Fertility of Soils >Nitrous oxide emission from soil and from a nitrogen-15-labelled fertilizer with the new nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP)
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Nitrous oxide emission from soil and from a nitrogen-15-labelled fertilizer with the new nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP)

机译:新型硝化抑制剂3,4-二甲基吡唑磷酸酯(DMPP)从土壤和氮15标记肥料排放的一氧化二氮

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摘要

Mineral-N fertilization can lead to a short-term enhancement of N2O emission from cultivated land. The aim of this field study was the quantitative determination of the short-term N2O emission after application of a fertilizer with the new nitrification inhibitor (NI) 3,4-dimethylpyrazole phosphate (DMPP) to winter wheat. NO3 – and NH4 + fertilizers labelled with 15N in liquid and granulated form were used in specific fertilizer strategies. N fertilizers with higher NO3 – contents caused higher N2O emission than NH4 + fertilizers. For fertilizers with NIs, used in simplified fertilizer strategies with fewer applications and an earlier timing of the N fertilization, the N2O release was reduced by about 20%. Of the total N2O emission measured, 10–40% was attributed to fertilizer N and 60–90% originated from soil N. Besides the fertilizer NO3 –-N, the microbial available-N pool in the soil represented a further important source for N2O losses. Compared to liquid fertilizers, the application in granulated form led to smaller N2O emissions. For fertilizers with NIs, the decrease in the N2O emission is mainly due to their low NO3 –-N content and the possibility of reducing the number of applications.
机译:矿物氮肥可导致耕地N2O排放量短期增加。这项田间研究的目的是定量测定新型硝化抑制剂(NI)3,4-二甲基吡唑磷酸酯(DMPP)在冬小麦中施用肥料后的短期N2O排放量。在具体的施肥策略中使用了液态和颗粒状标记有15 N的NO3 和NH4 + 肥料。氮含量较高的NO3 肥料引起的N2 O排放量高于NH4 + 的肥料。对于具有NIs的肥料,在简化的肥料策略中使用较少的应用,并且更早地施氮,N2 O的释放量减少了约20%。在测得的总N2 O排放量中,有10–40%来自肥料N,而60–90%来自土壤N。除了NO3 -N肥料外,还有可用的微生物土壤中的-N库是N2 O损失的另一个重要来源。与液体肥料相比,以颗粒形式施用可减少N2 O的排放。对于具有NIs的肥料,N2 O排放量的减少主要是由于它们的NO3 -N含量低以及减少施用量的可能性。

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