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Modeling seagrass bed dynamics under environmental impacts of intensive mariculture activities in Bolinao and Anda, the Philippines

机译:菲律宾和安达,菲律宾密集的海水养殖活动环境影响下的海草床动态

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摘要

This study assessed the estuarine-scale dynamics of mixed seagrass beds in Bolinao and Anda coastal areas in the Philippines, where seagrass beds have declined primarily due to eutrophication-induced degradation of light environment caused by unregulated mariculture activities in the adjacent areas. A seagrass model, driven by a coupled hydrodynamic-biogeochemical model, was developed and applied to the two-dominant species in the area - Thalassia hemprichii and Enhalus acoroides, and validated using observed spatial seagrass shoot density. The results showed the degradation of light environment in the seagrass beds, especially near mariculture areas, due to advective fluxes of water with high phytoplankton biomass and high nutrients from fish farms. The seagrass model driven by the reproduced water quality showed high reproducibility of seagrass above-ground biomass distribution of the two co-existing species, with R-2 values of 0.78 and 0.60 for T. hemprichii and E. acoroides, respectively. Scenario analysis was conducted to examine the effectiveness of individual- and inter-municipality mariculture management (e.g., regulating fish feed input) in improving the light environment and facilitating the recovery of seagrasses. Results showed that the light environment could be significantly enhanced by an intermunicipality scheme compared to individual efforts of Bolinao and Anda municipalities, since their waters are interconnected through hydrodynamics. In conjunction with the improvement of light conditions, the recovery in seagrass abundance is most significant under the cooperative management scheme, thus highlighting its effectiveness.
机译:本研究评估了菲律宾和菲律宾沿海地区的混合海草床的河口级动态,海草床主要因富营养的海水养殖活动引起的邻近地区的未经化的海水养殖引起的光环境下降而下降。由偶联的流体动力学 - 生物地球化学模型驱动的海草模型,并应用于该地区的两种优势物种 - Thalassia Hemprichii和Enhaloides,并使用观察到的空间海草芽密度验证。结果表明,海草床中的光环境下降,特别是海水养殖区,由于具有高浮游植物生物量和来自鱼类农场的高营养素的水平。由再现水质驱动的海草模型显示出两种共存物种的海草上面的海草的高再现性,其分别具有0.78和0.60的R-2值,分别为碘化症。进行情景分析,以研究个人和市间海水养殖管理的有效性(例如,调节鱼类进料输入),改善光线环境,促进海草的恢复。结果表明,与Bolinao和Anda市政当局的个体努力相比,可以通过间歇性方案显着提高光环境,因为他们的水域通过流体动力学互连。结合光线条件的改善,在合作管理方案下,海草丰度的恢复是最重要的,从而突出了其有效性。

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  • 来源
    《Estuarine Coastal and Shelf Science》 |2021年第5期|107152.1-107152.14|共14页
  • 作者单位

    Sch Environm & Soc Tokyo Inst Technol Dept Transdisciplinary Sci & Engn Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan;

    Sch Environm & Soc Tokyo Inst Technol Dept Transdisciplinary Sci & Engn Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan;

    Hachinohe Inst Technol Dept Life & Environm Sci Ohbiraki 88-1 Myo Hachinohe Aomori 0318501 Japan;

    Hokkaido Univ Field Sci Ctr Northern Biosphere Akkeshi Marine Stn Akkeshi Hokkaido 0881113 Japan;

    Sch Environm & Soc Tokyo Inst Technol Dept Transdisciplinary Sci & Engn Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan|Sasakawa Peace Fdn Ocean Policy Res Inst Minato Ku 1-15-16 Toranomon Tokyo 1058524 Japan;

    Univ Philippines Inst Civil Engn Quezon City 1101 Philippines;

    Tokyo Inst Technol Grad Sch Informat Sci & Engn Dept Mech & Environm Informat Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan;

    Univ Tokyo Atmosphere & Ocean Res Inst Marine Biogeochem Grp Kashiwanoha 5-1-5 Kashiwa Chiba 2778564 Japan;

    Univ Philippines Marine Sci Inst Quezon City 1101 Philippines;

    Univ Philippines Marine Sci Inst Quezon City 1101 Philippines;

    Univ Philippines Coll Engn Dept Geodet Engn Quezon City 1101 Philippines;

    Sch Environm & Soc Tokyo Inst Technol Dept Transdisciplinary Sci & Engn Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan;

    Sch Environm & Soc Tokyo Inst Technol Dept Transdisciplinary Sci & Engn Meguro Ku O Okayama 2-12-1 W8-13 Tokyo 1528552 Japan;

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

    Seagrass; Model analysis; Eutrophication; Light attenuation; Mariculture; Bolinao;

    机译:海草;模型分析;富营养化;光衰减;海水养殖;Bolinao;
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