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首页> 外文期刊>Progress in Oceanography >Modeling the impacts of atmospheric deposition of nitrogen and desert dust-derived phosphorus on nutrients and biological budgets of the Mediterranean Sea
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Modeling the impacts of atmospheric deposition of nitrogen and desert dust-derived phosphorus on nutrients and biological budgets of the Mediterranean Sea

机译:模拟大气中氮的沉积和沙漠尘土衍生的磷对地中海养分和生物预算的影响

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摘要

Atmospheric deposition represents a significant source of nutrients at the Mediterranean basin scale. We apply aerosol deposition fields simulated from atmospheric models into the high resolution oceanic bio-geochemical model NEMOMED12/PISCES with nutrient ratios used for plankton growth set to Redfield ratio. We perform 3 simulations to determine the impact of nutrients on productivity over the period 1997-2012: (i) without atmospheric deposition, (ii) with nitrogen deposition from anthropogenic and natural sources, and (iii) with deposition of both nitrogen (from anthropogenic and natural sources) and phosphate from desert dust. Time series of modeled deposition fluxes are compared to available measurements. This comparison with measurements shows that both variability and intensity ranges are realistic enough for our main purpose of estimating the atmospheric deposition impact on Mediterranean biogeochemical tracers such as surface nutrient concentrations, chlorophyll a and plankton concentrations. Our results show that atmospheric deposition is one of the major sources of nitrogen and phosphorus for some regions of the oligotrophic Mediterranean Sea. More than 18.10(9)gN month(-1) are deposited to the whole Mediterranean Sea. This deposition is responsible for an average increase of 30-50% in primary production over vast regions. Natural dust-derived deposition of phosphorus is sparser in space and time (0.5.10(9) g month(-1) on average over the entire basin). However, dust deposition events can significantly affect biological production. We calculate fertilizing effects of phosphate from dust to be low on average (6-10%) but up to 30% increase in primary productivity can be observed during the months when surface water stratification occurs. Finally, these fertilizing effects are shown to be transmitted along the biological chain (primary production, Chl a, phytoplankton, zooplankton, grazing). We also perform a preliminary study on the maximal biological response of the Mediterranean by simulating extreme deposition events throughout the basin over a full year period. We show that nitrogen deposition effects observed in our long-term simulations (1997-2012) are close to maximal effects (i.e. those produced by high intensity deposition events) whereas dust-derived phosphate effects are substantially weaker than the effect on productivity reached when an extreme deposition event occurs. (C) 2017 Published by Elsevier Ltd.
机译:大气沉积是地中海盆地规模营养的重要来源。我们将大气模型模拟的气溶胶沉积场应用于高分辨率海洋生物地球化学模型NEMOMED12 / PISCES,其中用于浮游生物生长的营养比设置为Redfield。我们进行了3次模拟,以确定1997-2012年期间养分对生产力的影响:(i)没有大气沉积,(ii)来自人为和自然资源的氮沉积,以及(iii)同时存在氮(人为的)沉积和自然资源)和沙漠尘土中的磷酸盐。将建模的沉积通量的时间序列与可用的测量结果进行比较。这种与测量结果的比较表明,对于我们估算大气沉积对地中海生物地球化学示踪剂(例如表面营养物浓度,叶绿素a和浮游生物浓度)的主要目的,变异性和强度范围都足够现实。我们的结果表明,大气沉积是贫营养地中海地区某些地区氮和磷的主要来源之一。超过18.10(9)gN月(-1)沉积到整个地中海。这种沉积导致广阔地区的初级生产平均增加30-50%。自然尘土中磷的沉积在空间和时间上都很少(整个盆地平均为0.5.10(9)g month(-1))。但是,灰尘沉积事件会严重影响生物生产。我们计算得出,粉尘中磷酸盐的施肥效果平均较低(6-10%),但是在发生地表水分层的月份中,可以观察到初级生产力提高多达30%。最后,这些施肥效应显示为沿生物链传递(初级生产,Cla,浮游植物,浮游动物,放牧)。我们还通过模拟整个盆地全年的极端沉积事件,对地中海的最大生物响应进行了初步研究。我们表明,在长期模拟(1997-2012年)中观察到的氮沉降效应接近最大效应(即由高强度沉积事件产生的氮沉降效应),而粉尘衍生的磷酸盐效应远弱于当发生极端沉积事件。 (C)2017由Elsevier Ltd.发布

著录项

  • 来源
    《Progress in Oceanography》 |2018年第4期|21-39|共19页
  • 作者单位

    CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France;

    CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France;

    CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France;

    CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France;

    CEA CNRS UVSQ, IPSL, LSCE, Gif Sur Yvette, France;

    Ctr Natl Recherches Meteorol, Meteo France, UMR1357, GAME, 42 Ave G Coriolis, F-31057 Toulouse 1, France;

    IPSL, LOCEAN, 4 Pl Jussieu, F-75005 Paris, France;

    Univ Paris Diderot, UMR7583, CNRS, LISA, 61 Av Gen de Gaulles, Creteil, France;

    Univ Paris Diderot, UMR7583, CNRS, LISA, 61 Av Gen de Gaulles, Creteil, France;

    Observ Oceanol, CNRS INSU UMR7093, LOV Lab Oceanog Villefranche Mer, F-06230 Villefranche Sur Mer, France;

    Univ Toulon & Var, Aix Marseille Univ, CNRS INSU, Mediterranean Inst Oceanog,UMR110,IRD, F-13288 Marseille, France;

    Mercator Ocean, Parc Technol Canal,8-10 Rue Hermes Ramonville, St Agne, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mediterranean; Biogeochemistry; Aerosol; Nutrient; Deposition;

    机译:地中海;生物地球化学;气溶胶;营养素;沉积;

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