首页> 外文期刊>Science of the total environment >The impact assessment of hydro-biological connectivity changes on the estuary wetland through the ecological restoration project in the Yellow River Delta, China
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The impact assessment of hydro-biological connectivity changes on the estuary wetland through the ecological restoration project in the Yellow River Delta, China

机译:中国黄河三角洲生态恢复项目对河口湿地的影响评价

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摘要

Yellow River Delta (YRD) is one of the youngest delta with complex hydrological and biological connectivity in the world, where offers habitats to the famous waterfowls in the Eastern Asia. Meanwhile, one specific ecological restoration project named as the "Wuwanmu" and followed by the "Shiwanmu" within the National Nature Reserve of the Yellow River Delta (NNRYRD) complicated the hydrological and biological connectivity. How to quantitatively evaluate the extent of coastal wetland affected by the project will be a difficult problem. Hence the authors presented three innovative models of the Marine Connectivity Change Index (MCCI), the Coupling Index of Hydro-biological Connectivity (CIHBC), and the Assessment Index of Suitability on Bird Habitats (AISBH). After the project, the habitat of Phragmites australis has been restored effectively with the increased area of 24.59%, while the habitat of Suaeda salsa as the native species lost largely with decreased area of 84.62%. And the tidal channel having been cut off by the project resulted in isolating the buildup restoration area from seawater, and reshaping completely the plant habitat environment. So the hydrological and biological connectivity has been changed largely with the 47.79% decreased MCCI area and the 16.3% decreased zero-valued CIHBC area. However the AISBH non-zero-valued area increased 10.7%, and with the hidden worry of the decreased Grallatores number. From the connectivity prospective, three models presented a significant methodology to evaluate the complex impact on the estuary wetland habitat caused by the restoration project In the long run, the ecological impacts should be highlighted to the change of tidal channel and the corresponding tidal issues, and the continuous and big loss of native plant spices such as S. salsa. The further study needs to explore the longer-term assessment of the ecological restoration project and its multiple effect in the future.
机译:黄河三角洲(YRD)是世界上最复杂的水文和生物连接最年轻的三角洲之一,其中提供了东亚着名水禽的栖息地。同时,一个特定的生态修复项目名为“武湾武”,并在黄河三角洲(NNRYRD)的国家自然保护区内的“石武谟”复杂化了水文和生物连接。如何定量评估受项目影响的沿海湿地的程度将是一个难题。因此,作者提出了三种创新模型的海洋连接变化指数(MCCI),水力 - 生物连接(CIHBC)的耦合指数,以及鸟栖栖息地的适用性评估指标(AISBH)。项目后,澳大利亚省栖息地已被有效恢复,增加了24.59%的面积,而苏亚萨·萨尔萨的栖息地是当地物种,主要损失面积减少84.62%。并且由项目切断的潮气通道导致将海水的累积恢复面积隔离,并完全植入植物栖息地环境。因此,水文和生物连接在很大程度上变化了47.79%下降的M​​CCI面积,16.3%降低零值下降的CIHBC地区。然而,AISBH非零价值面积增加了10.7%,并且隐藏着格雷特人数减少的担忧。从连接前期来看,三种模型提出了一种重要的方法来评估河口湿地栖息地的复杂影响,从长远来看,应突出生态影响,以改变潮气渠道和相应的潮汐问题,以及天然植物香料的持续和巨大损失,如S. Salsa。进一步的研究需要探讨生态恢复项目的长期评估及其未来的多效果。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|143706.1-143706.10|共10页
  • 作者单位

    College of Resource Environment and Tourism Capital Normal University Beijing 100048 China Key Laboratory of 3D Information Acquisition and Application of Ministry Capital Normal University Beijing 100048 China;

    College of Resource Environment and Tourism Capital Normal University Beijing 100048 China Key Laboratory of 3D Information Acquisition and Application of Ministry Capital Normal University Beijing 100048 China;

    College of Resource Environment and Tourism Capital Normal University Beijing 100048 China Key Laboratory of 3D Information Acquisition and Application of Ministry Capital Normal University Beijing 100048 China;

    College of Resource Environment and Tourism Capital Normal University Beijing 100048 China Key Laboratory of 3D Information Acquisition and Application of Ministry Capital Normal University Beijing 100048 China;

    State Key Laboratory of Water Environment Simulation School of Environment Beijing Normal University Beijing 100875 China;

    College of Resource Environment and Tourism Capital Normal University Beijing 100048 China Key Laboratory of 3D Information Acquisition and Application of Ministry Capital Normal University Beijing 100048 China;

    State Key Laboratory of Water Environment Simulation School of Environment Beijing Normal University Beijing 100875 China;

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

    Hydro-biological connectivity; Yellow River Delta; Wetland restoration; Estuary waterfowls;

    机译:水 - 生物连接;黄河三角洲;湿地修复;河口水禽;

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