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Factors controlling sediment and nutrient fluxes in a small microtidal salt marsh within the Venice Lagoon

机译:控制威尼斯泻湖小型微量盐沼泥沙和营养势态的因素

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摘要

Coastal salt marshes are among the Earth's most productive ecosystems and provide a number of ecosystem services. Water quality regulation by storing, transforming and releasing nutrients, organic matter and suspended sediment is recognized as one of the most important functions of salt marshes. The self-purification capacity of intertidal ecosystems contributes to mitigating nutrient inputs, acting as a buffer zone between watersheds and coastal waters, especially in relation to climate change and the increasing frequency of impulsive extreme events. Understanding sediment and nutrient fluxes and assessing the mechanisms that control them are valuable for the preservation and future restoration of salt marshes and for enhancing their effectiveness in providing water quality regulation services. To investigate the main driving factors in microtidal environments, changes in suspended sediment and nutrient concentrations were measured during several tidal cycles in a small microtidal reconstructed salt marsh in the Venice Lagoon, which was selected as the experimental site. The tidal amplitude, nutrients and total suspended solid concentrations were measured during 6 tidal cycles between September 2011 and October 2013. The water discharge was derived by forcing the hydrodynamic MIKE-DHI numerical model with the measured tidal levels. Fluxes were assessed by coupling field data with the calculated discharges. The salt marsh filtering function was related to the inflow matter concentrations and tidal amplitude. When high suspended solid and nutrient concentrations enter the salt marsh, accumulation processes prevail on release. In contrast, in the case of low concentrations and high tidal excursion, the salt marsh functions as a nutrient and sediment source. During all campaigns, the nitrogen removal function was more effective within the intertidal vegetated areas. Sediment release was the dominant process in the outermost creek, whereas sedimentation prevailed in the inner area of the salt marsh because of the attenuation of hydrodynamic forcing during tide propagation.
机译:沿海盐沼是地球最富有成效的生态系统之一,提供了许多生态系统服务。通过储存,转化和释放营养素,有机物和悬浮沉积物的水质调节被认为是盐沼的最重要功能之一。跨透视生态系统的自净化能力有助于减轻营养投入,作为水流域和沿海水域之间的缓冲区,特别是与气候变化和脉冲极端事件的越来越多的频率。了解沉积物和营养助焊剂,并评估控制它们对保存和未来恢复盐沼的机制,并加强其在提供水质监管服务方面的有效性。为了研究微量环境中的主要驱动因子,在威尼斯泻湖的小型微量重建盐沼的几个潮汐循环中测量悬浮沉积物和营养浓度的变化,选择为实验部位。在2011年9月和2013年10月之间的6个潮汐循环期间测量潮汐振幅,营养素和总悬浮的固体浓度。通过使用测量的潮水水平强制流体动力学MIKE-DHI数值来得出排水。通过使用计算出的放电耦合现场数据来评估助熔剂。盐沼滤波功能与流入物质浓度和潮汐幅度有关。当高悬浮的固体和营养浓度进入盐沼时,释放的积累过程占上风。相比之下,在低浓度和高潮汐偏移的情况下,盐沼起到营养和沉积物来源。在所有竞选期间,氮气去除功能在跨境植被区域内更有效。沉积物释放是最外面的溪流中的主要过程,而由于在潮汐繁殖期间的流体动力学迫使时,沉淀在盐沼的内部区域盛行。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第2期|1832-1845|共14页
  • 作者单位

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

    Italian National Institute for Environmental Protection and Research ISPRA Loc. Brondolo 30015 Chioggia Venezia Italy;

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

    Nutrient fluxes; Sediment fluxes; Salt marshes; Lagoon;

    机译:营养势态;沉积物势态;盐沼;泻湖;

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