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Groundwater nitrate response to sustainable nitrogen management

机译:地下水硝酸盐对可持续氮管理的响应

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摘要

Throughout the world, nitrogen (N) losses from intensive agricultural production may end up as undesirably high concentrations of nitrate in groundwater with a long-term impact on groundwater quality. This has human and environmental health consequences, due to the use of groundwater as a drinking water resource, and causes eutrophication of groundwater-dependent ecosystems such as wetlands, rivers and near-coastal areas. At national scale, the measured nitrate concentrations and trends in Danish oxic groundwater in the last 70 years correlate well with the annual agricultural N surpluses. We also show that the N use efficiency of agriculture is related to the groundwater nitrate concentrations. We demonstrate an inverted U-shape of annual nitrate concentrations as a function of economic growth from 1948 to 2014. Our analyses evidence a clear trend of a reversal at the beginning of the 1980s towards a more sustainable agricultural N management. This appears to be primarily driven by societal demand for groundwater protection linked to economic prosperity and an increased environmental awareness. However, the environmental and human health thresholds are still exceeded in many locations. Groundwater protection is of fundamental global importance, and this calls for further development of environmentally and economically sustainable N management in agriculture worldwide.
机译:在全世界范围内,集约化农业生产造成的氮(N)损失最终可能会导致地下水中硝酸盐的浓度过高,从而对地下水质量产生长期影响。由于使用地下水作为饮用水资源,对人类和环境健康造成影响,并导致依赖于地下水的生态系统富营养化,例如湿地,河流和近岸地区。在全国范围内,过去70年中测得的丹麦含氧地下水中的硝酸盐浓度和趋势与每年的农业氮过剩密切相关。我们还表明,农业的氮利用效率与地下水硝酸盐浓度有关。从1948年到2014年,我们证明了硝酸盐年浓度的倒U形与经济增长的关系。我们的分析表明,在1980年代初出现了明显的趋势,即向更可持续的农业氮素管理方式转变。这似乎主要是由于社会对地下水保护的需求与经济繁荣和对环境的认识提高有关。但是,许多地方仍然超过了环境和人类健康的阈值。地下水保护在全球具有根本的重要性,这要求在全球范围内进一步发展在环境和经济上可持续的氮素管理。

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