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Bi-directional soil/atmosphere N2O exchange over two mown grassland systems with contrasting management practices.

机译:在两个割草系统之间进行双向土壤/大气N2O交换,采用相反的管理方法。

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摘要

Nitrous oxide (N2O) fluxes from soil under mown grassland were monitored using static chambers over three growing seasons in intensively and extensively managed systems in Central Switzerland. Emissions were largest following the application of mineral (NH4NO3) fertilizer, but there were also substantial emissions following cattle slurry application, after grass cuts and during the thawing of frozen soil. Continuous flux sampling, using automatic chambers, showed marked diurnal patterns in N2O fluxes during emission peaks, with highest values in the afternoon. Net uptake fluxes of N2O and subambient N2O concentrations in soil open pore space were frequently measured on both fields. Flux integration over 2.5 years yields a cumulated emission of +4.7 kgN2O-N ha-1 for the intensively managed field, equivalent to an average emission factor of 1.1%, and a small net sink activity of -0.4 kg N2O-N ha-1 for the unfertilized system. The data suggest the existence of a consumption mechanism for N2O in dry, areated soil conditions, which cannot be explained by conventional anaerobic denitrification. The effect of fertilization on greenhouse gas budgets of grassland at the ecosystem level is discussed..
机译:在瑞士中部,在集约化和集约化管理的系统中,在三个生长季节中,使用静室监测了割草后土壤中的一氧化二氮(N2O)通量。施用矿物(NH4NO3)肥料后的排放量最大,但是在施用牛粪后,割草后和解冻冻土期间也有大量排放物。使用自动室进行的连续通量采样显示出排放峰值期间N2O通量的明显的昼夜模式,下午的最大值。在这两个领域中,经常测量土壤开孔空间中N2O的净吸收通量和环境中N2O的浓度。在2.5年的时间内,通量积分产生的结果表明,对于集约化管理的田地,其累积排放量为+4.7 kgN2O-N ha-1,相当于平均排放因子为1.1%,净沉池活动值为-0.4 kg N2O-N ha-1对于未受精的系统。数据表明在干燥的干旱土壤条件下存在N2O的消耗机制,这不能用常规的厌氧反硝化来解释。讨论了在生态系统水平上施肥对草原温室气体收支的影响。

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