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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Impact of Chronic and Massive Resuspension Mechanisms on the Microphytobenthos Dynamics in a Temperate Intertidal Mudflat
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Impact of Chronic and Massive Resuspension Mechanisms on the Microphytobenthos Dynamics in a Temperate Intertidal Mudflat

机译:慢性和大规模重悬机制对温带跨境泥浆晶体动力学的影响

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摘要

Microphytobenthos (MPB) resuspension is a key mechanism in the transfer of organic matter from productive intertidal mudflats to terrestrial and marine systems. In this study, we infer on the contribution of physical and biological factors involved in the MPB resuspension.We use a physical-biological coupled model forced by realistic meteorological and hydrodynamical forcings to simulate chronic (without any concomitant sediment resuspension) and massive (driven by bed failure) resuspension over a year. The model simulates mud surface temperature, MPB growth, and grazing by the gastropod Peringia ulvae. The model suggests that MPB resuspension is the highest in spring tides and at the flood beginning due to high current velocity and low water heights that promote waves-sea bottom interactions. The seasonal export of MPB biomass is the highest in spring, up to threefold higher than in summer when the export is the lowest. The simulated seasonal dynamics of MPB resuspension results from the MPB biomass concentration in the sediment, physical disturbances, and the bioturbation activity by P. ulvae. Annually, 43% of the simulated MPB primary production is resuspended. The MPB resuspension (60.8 g C·m~(-2)·yr~(-1)) exceeds the loss by P. ulvae grazing (41.1 g C·m~(-2)·yr~(-1)). The model suggests that chronic and massive resuspension events are important in the synoptic to seasonal MPB dynamics in temperate intertidal mudflats. Accounting for such processes in the carbon budget assessment in the land-ocean interface could bring new insights to our understanding of the role played byMPB in the coastal carbon cycle.
机译:Microphytobenthos(MPB)重悬浮是从生产性跨境泥板转移到陆地和海洋系统的有机物质的关键机制。在这项研究中,我们推断了MPB重新悬浮所涉及的物理和生物因素的贡献。我们使用逼真的气象和流体动力学强制迫使物理生物耦合模型来模拟慢性(没有任何伴随的沉积物重新悬浮)和巨大的(驱动床故障)重新悬浮一年。该模型模拟泥浆表面温度,MPB生长,并由腓络佩特汀Ulvae放牧。该模型表明,由于高电流速度和低水高,MPB重新悬浮在春潮中最高,洪水开始,促进了波浪海底相互作用。 MPB生物量的季节性出口是春季最高,在出口最低的情况下,夏季高出三倍。 MPB重悬的模拟季节性动态来自沉积物,物理紊乱和P.Ulvae的生物紊乱和生物扰动活性的MPB生物质浓度。每年,重新悬浮43%的模拟MPB初级生产。 MPB重新悬浮(60.8g C·m〜(-2)·Yr〜(-1))超过P.Ulvae Grazing的损失(41.1g C·m〜(-2)·Yr〜(-1))。该模型表明,慢性和巨大的重悬事件在温带跨境泥板中的季节性MPB动态中很重要。占土地界面中的碳预算评估中的此类进程可以为我们对沿海碳循环中的MPB发挥作用的理解带来新的见解。

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  • 作者单位

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    Université de Caen Basse-Normandie UMR BOREA (MNHN UPMC UCBN CNRS-7208 IRD-207) Caen France;

    Mer Molécules Santé (MMS) - EA 21 60 Université de Nantes Mer Molécules Santé Nantes France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    IFREMER Laboratoire Environnement Ressources des Pertuis Charentais (LER/PC) L'Houmeau France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

    LIttoral ENvironnement et SociétéS (LIENSs) Université de La Rochelle UMR 7266 CNRS-ULR La Rochelle France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物分布与生物地理学;
  • 关键词

    Impact of Chronic; Massive Resuspension Mechanisms; Microphytobenthos Dynamics;

    机译:慢性的影响;巨大的重悬浮机制;Microphytobenthos动力学;

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