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Soil net nitrogen mineralisation across global grasslands

机译:全球草地上的土壤净氮矿化

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摘要

Soil nitrogen mineralisation (Nmin), the conversion of organic into inorganic N, is important for productivity and nutrient cycling. The balance between mineralisation and immobilisation (net Nmin) varies with soil properties and climate. However, because most global-scale assessments of net Nmin are laboratory-based, its regulation under field-conditions and implications for real-world soil functioning remain uncertain. Here, we explore the drivers of realised (field) and potential (laboratory) soil net Nmin across 30 grasslands worldwide. We find that realised Nmin is largely explained by temperature of the wettest quarter, microbial biomass, clay content and bulk density. Potential Nmin only weakly correlates with realised Nmin, but contributes to explain realised net Nmin when combined with soil and climatic variables. We provide novel insights of global realised soil net Nmin and show that potential soil net Nmin data available in the literature could be parameterised with soil and climate data to better predict realised Nmin.
机译:土壤氮矿化(Nmin)是有机氮向无机氮的转化,对于生产力和养分循环至关重要。矿化和固定化之间的平衡(净Nmin)随土壤性质和气候而变化。但是,由于大多数全球范围的净Nmin评估都是基于实验室的,因此其在野外条件下的调节及其对现实土壤功能的影响仍然不确定。在这里,我们探讨了全球30个草地上已实现的(田间)和潜在的(实验室)土壤净Nmin的驱动因素。我们发现,已实现的Nmin很大程度上由最湿季的温度,微生物生物量,粘土含量和堆积密度来解释。潜在的Nmin仅与实现的Nmin弱相关,但有助于结合土壤和气候变量来解释实现的净Nmin。我们提供了全球已实现土壤净Nmin的新颖见解,并表明可以将土壤中的潜在土壤净Nmin数据与土壤和气候数据参数化,以更好地预测已实现Nmin。

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