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Transformation of nitrogen and nitrous oxide emission from grassland soils as affected by compaction.

机译:受压实影响的草地土壤中氮和一氧化二氮排放的转化。

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摘要

Animal trampling is one of the main factors responsible for soil compaction under grazed pastures. Soil compaction is known to change the physical properties of the soil thereby affecting the transformation of nitrogen (N) and the subsequent of release of N as nitrous oxide (N2O). The form of N source added to these compacted soils further affects N emissions. Here we determine the interactive effects of soil compaction and form of N sources (cattle urine and ammonium, nitrate and urea fertilizers) on the loss of N through N2O emission from grassland soil. Overall, soil compaction caused a seven-fold increase in the N2O flux, the total N2O fluxes for the entire experimental period ranged from 2.62 to 61.74 kg N2O-N ha-1 for the compacted soil and 1.12 to 4.37 kg N2O-N ha-1 for the uncompacted soil. Among the N sources, the highest emissions were measured with nitrate application, emissions being 10 times more than those from other N sources for compacted soil, suggesting that the choice of N fertilizer can go a long way in mitigating N2O emissions in compacted grasslands..
机译:践踏动物是放牧牧场下土壤致密化的主要因素之一。众所周知,土壤压实会改变土壤的物理性质,从而影响氮(N)的转化以及氮作为一氧化二氮(N2O)的释放。添加到这些压实土壤中的氮源的形式进一步影响了氮的排放。在这里,我们确定了土壤压实和氮源(牛尿,铵,硝酸盐和尿素肥料)的形式对草地土壤中N2O排放造成的N损失的相互作用。总体而言,土壤压实导致N2O通量增加了7倍,在整个实验期间,压实土壤的总N2O通量范围为2.62至61.74 kg N2O-N ha-1和1.12至4.37 kg N2O-N ha- 1为未压实的土壤。在氮源中,最高排放量是通过施用硝酸盐来衡量的,其排放量是压实土壤中其他氮源的排放量的10倍以上,这表明选择氮肥对减轻压实草地的N2O排放有很大帮助。

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