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Human-induced nitrogen–phosphorus imbalances alter natural and managed ecosystems across the globe

机译:人为引起的氮磷失衡改变了全球的自然生态系统和受管理的生态系统

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The availability of carbon from rising atmospheric carbon dioxide levels and of nitrogen from various human-induced inputs to ecosystems is continuously increasing; however, these increases are not paralleled by a similar increase in phosphorus inputs. The inexorable change in the stoichiometry of carbon and nitrogen relative to phosphorus has no equivalent in Earth’s history. Here we report the profound and yet uncertain consequences of the human imprint on the phosphorus cycle and nitrogen:phosphorus stoichiometry for the structure, functioning and diversity of terrestrial and aquatic organisms and ecosystems. A mass balance approach is used to show that limited phosphorus and nitrogen availability are likely to jointly reduce future carbon storage by natural ecosystems during this century. Further, if phosphorus fertilizers cannot be made increasingly accessible, the crop yields projections of the Millennium Ecosystem Assessment imply an increase of the nutrient deficit in developing regions.
机译:大气中二氧化碳水平不断上升产生的碳,以及人为因素对生态系统的各种投入所产生的氮,正在不断增加;但是,这些增加与磷输入量的类似增加并没有平行。碳和氮相对于磷的化学计量的不可改变的变化在地球历史上是无与伦比的。在这里,我们报告了人类在磷循环和氮:磷化学计量上对陆生和水生生物体和生态系统的结构,功能和多样性产生的深刻而不确定的后果。一种质量平衡方法被用来表明有限的磷和氮的可用性很可能共同减少本世纪自然生态系统的未来碳储存。此外,如果无法使磷肥越来越容易获得,则千年生态系统评估的作物产量预测意味着发展中地区养分短缺。

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