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Consequences of human modification of the global nitrogen cycle

机译:人类改变全球氮循环的后果

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The demand for more food is increasing fertilizer and land use, and the demand for more energy is increasing fossil fuel combustion, leading to enhanced losses of reactive nitrogen (Nr) to the environment. Many thresholds for human and ecosystem health have been exceeded owing to Nr pollution, including those for drinking water (nitrates), air quality (smog, particulate matter, ground-level ozone), freshwater eutrophication, biodiversity loss, stratospheric ozone depletion, climate change and coastal ecosystems (dead zones). Each of these environmental effects can be magnified by the 'nitrogen cascade': a single atom of Nr can trigger a cascade of negative environmental impacts in sequence. Here, we provide an overview of the impact of Nr on the environment and human health, including an assessment of the magnitude of different environmental problems, and the relative importance of Nr as a contributor to each problem. In some cases, Nr loss to the environment is the key driver of effects (e.g. terrestrial and coastal eutrophication, nitrous oxide emissions), whereas in some other situations nitrogen represents a key contributor exacerbating a wider problem (e.g. freshwater pollution, biodiversity loss). In this way, the central role of nitrogen can remain hidden, even though it actually underpins many trans-boundary pollution problems.
机译:对更多食物的需求正在增加肥料和土地的使用,对更多能源的需求正在增加化石燃料的燃烧,从而导致环境中活性氮(Nr)的损失增加。由于Nr污染,已经超过了许多人类和生态系统健康的阈值,包括饮用水(硝酸盐),空气质量(烟雾,颗粒物,地面臭氧),淡水富营养化,生物多样性丧失,平流层臭氧消耗,气候变化等和沿海生态系统(死区)。这些环境影响中的每一个都可以通过“氮级联反应”来放大:Nr的单个原子可以依次触发一系列负面的环境影响。在这里,我们概述了Nr对环境和人类健康的影响,包括评估各种环境问题的严重性以及Nr作为每个问题的贡献者的相对重要性。在某些情况下,Nr向环境的损失是影响的主要驱动因素(例如,陆地和沿海富营养化,一氧化二氮的排放),而在另一些情况下,氮是加剧更广泛问题(例如,淡水污染,生物多样性丧失)的关键因素。这样,尽管氮实际上支撑了许多跨界污染问题,但氮的中心作用仍可被隐藏。

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