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Subalpine Pyrenees received higher nitrogen deposition than predicted by EMEP and CHIMERE chemistry-transport models

机译:亚高山比利牛斯山脉的氮沉积量高于EMEP和CHIMERE化学迁移模型的预测值

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摘要

Deposition of reactive nitrogen (N) from the atmosphere is expected to be the third greatest driver of biodiversity loss by the year 2100. Chemistry-transport models are essential tools to estimate spatially explicit N deposition but the reliability of their predictions remained to be validated in mountains. We measured N deposition and air concentration over the subalpine Pyrenees. N deposition was found to range from 797 to 1,463 mg N m−2 year−1. These values were higher than expected from model predictions, especially for nitrate, which exceeded the estimations of EMEP by a factor of 2.6 and CHIMERE by 3.6. Our observations also displayed a reversed reduced-to-oxidized ratio in N deposition compared with model predictions. The results highlight that the subalpine Pyrenees are exposed to higher levels of N deposition than expected according to standard predictions and that these levels exceed currently recognized critical loads for most high-elevation habitats. Our study reveals a need to improve the evaluation of N deposition in mountains which are home to a substantial and original part of the world’s biodiversity.
机译:到2100年,预计大气中反应性氮(N)的沉积将是生物多样性丧失的第三大推动因素。化学迁移模型是估算空间上显着的N沉积的重要工具,但其预测的可靠性仍有待验证山。我们测量了亚高山比利牛斯山脉的氮沉降和空气浓度。发现N的沉积范围为797至1,463 mg N m -2 year -1 。这些值高于模型预测的预期值,尤其是硝酸盐,其超出EMEP估计值2.6倍,CHIMERE超出3.6倍。与模型预测相比,我们的观察结果还显示了N沉积中还原的氧化还原比相反。结果表明,根据标准预测,亚高山比利牛斯山脉的氮沉降量高于预期水平,并且这些水平超过了目前公认的大多数高海拔生境的临界负荷。我们的研究表明,有必要提高对山区氮素沉积的评估,山区是世界生物多样性的重要组成部分。

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