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The nitrogen cascade from agricultural soils to the sea: modelling nitrogen transfers at regional watershed and global scales

机译:氮从农业土壤到海洋的级联反应:模拟区域流域和全球范围内的氮转移

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摘要

The nitrogen cycle of pre-industrial ecosystems has long been remarkably closed, in spite of the high mobility of this element in the atmosphere and hydrosphere. Inter-regional and international commercial exchanges of agricultural goods, which considerably increased after the generalization of the use of synthetic nitrogen fertilizers, introduced an additional type of nitrogen mobility, which nowadays rivals the atmospheric and hydrological fluxes in intensity, and causes their enhancement at the local, regional and global scales. Eighty-five per cent of the net anthropogenic input of reactive nitrogen occurs on only 43 per cent of the land area. Modern agriculture based on the use of synthetic fertilizers and the decoupling of crop and animal production is responsible for the largest part of anthropogenic losses of reactive nitrogen to the environment. In terms of levers for better managing the nitrogen cascade, beyond technical improvement of agricultural practices tending to increase nitrogen use efficiency, or environmental engineering management measures to increase nitrogen sinks in the landscape, the need to better localize crop production and livestock breeding, on the one hand, and agriculture and food demand on the other hand, is put forward as a condition to being able to supply food to human populations while preserving environmental resources.
机译:尽管该元素在大气层和水圈中具有很高的迁移率,但工业界前生态系统的氮循环早已显着关闭。在普遍使用合成氮肥之后,区域间和国际农产品的商业交易大大增加,引入了另一种类型的氮迁移率,如今它可以与大气和水文通量的强度相媲美,并导致其通量增加。本地,区域和全球范围。人为活性氮净输入量的百分之八十五仅发生在陆地面积的百分之四十三上。基于合成肥料的使用以及农作物与动物生产的脱钩的现代农业,是造成人为的活性氮对环境的最大损失。在更好地管理氮素级联的手段方面,除了倾向于提高氮素利用效率的农业实践的技术改进,或者是环境工程管理措施以增加景观中的氮沉降外,还需要对作物生产和牲畜育种进行更好的本地化。一方面提出了农业和粮食需求,这是能够在保护环境资源的同时向人类提供粮食的条件。

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