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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Denitrification and associated N2O emissions are limited by phosphorus availability in a grassland soil
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Denitrification and associated N2O emissions are limited by phosphorus availability in a grassland soil

机译:草地土壤中磷的有效性限制了反硝化作用和相关的N2O排放

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Effects of phosphorus (P) availability on nitrogen (N) loss through microbial nitrification and denitrification processes remain poorly understood. We conducted an incubation experiment to study the responses of N2O production after P (0 and 3 mg P kg(-1) soil) addition with and without NH4+ or NO3- (0 and 15 mg N kg(-1) soil) in a high P-fixing grassland soil. The N addition included a N-15 tracer (1 mg N-15 kg(-1)). In a separate experiment, we also investigated the effect of P availability on potential nitrification and denitrification. We hypothesised that the addition of P in the soil would increase N2O emission from microbial nitrification and denitrification and thereby less soil N-15-NH4+ and N-15-NO3- would be recovered. We found that P addition only significantly increased cumulative N2O emission and respiration in the NO3- treatment, suggesting stimulated activities of denitrifying microorganisms due to their relief from P limitation. However, a decrease in soil N-15 recovery after P addition in the NO3- treatment was not detected because of the very small loss of N as N2O (0.3% of the applied N-15 tracer). Potential denitrification marginally increased with P addition, while potential nitrification was not affected by P addition. We conclude that P addition may increase gaseous loss of N as N2O in P-poor soils through microbial denitrification rather than nitrification when inorganic N is abundant. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过微生物硝化和反硝化过程,磷(P)可用性对氮(N)损失的影响仍然知之甚少。我们进行了一个孵化实验,研究了在有磷和无磷或无NH4 +或NO3-(0和15 mg N kg(-1)土壤)中添加P(0和3 mg P kg(-1)土壤)后N2O产生的响应。高固磷草原土壤。 N的添加包括N-15示踪剂(1 mg N-15 kg(-1))。在另一个实验中,我们还研究了磷的有效性对潜在硝化和反硝化的影响。我们假设在土壤中添加磷会增加微生物硝化和反硝化过程中的N2O排放,从而减少了土壤N-15-NH4 +和N-15-NO3-的回收。我们发现,磷的添加仅显着增加了NO3-处理中累积的N2O排放和呼吸作用,这表明反硝化微生物由于不受P限制的影响而具有刺激的活性。但是,由于在氮肥中氮的损失非常小(<施用的N-15示踪剂的0.3%),因此在NO3-处理中添加磷后,未检测到土壤N-15的恢复下降。磷的潜在反硝化作用略有增加,而磷的潜在硝化作用不受磷的影响。我们得出的结论是,当无机氮丰富时,磷的添加会通过微生物反硝化而不是硝化作用,增加磷贫化土壤中作为N2O的氮的气态损失。 (C)2016 Elsevier B.V.保留所有权利。

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