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首页> 外文期刊>The Science of the Total Environment >The impact of pre-restoration land-use and disturbance on sediment structure, hydrology and the sediment geochemical environment in restored saltmarshes
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The impact of pre-restoration land-use and disturbance on sediment structure, hydrology and the sediment geochemical environment in restored saltmarshes

机译:盐碱地恢复前的土地利用和扰动对沉积物结构,水文和沉积物地球化学环境的影响

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Saltmarshes are being lost or degraded as a result of human activity resulting in loss of critical ecosystem services including the provision of wild species diversity, water quality regulation and flood regulation. To compensate, saltmarshes are being restored or re-created, usually driven by legislative requirements for increased habitat diversity, flood regulation and sustainable coastal defense. Yet, there is increasing evidence that restoration may not deliver anticipated ecosystem services; this is frequently attributed to poor drainage and sediment anoxia. However, physical sediment characteristics, hydrology and the sediment geochemical environment are rarely examined in restoration schemes, despite such factors being critical for plant succession. This study presents the novel integration of 3D-computed X-ray microtomography to quantify sediment structure and porosity, with water level and geochemical data to understand the impact of pre-restoration land use and disturbance on the structure and functioning of restored saltmarshes. The study combines a broad-scale investigation of physical sediment characteristics in nine de-embanked saltmarshes across SE England, with an intensive study at one site examining water levels, sediment structure and the sediment geochemical environment De-embankment does not restore the hydrological regime, or the physical/chemical framework in the saltmarshes and evidence of disturbance includes a reduction in microporosity, pore connectivity and water storage capacity, a lack of connectivity between the sub-surface environment and overlying floodwaters, and impeded sub-surface water flow and drainage. This has significant consequences for the sediment geochemical environment. This disturbance is evident for at least two decades following restoration and is likely to be irreversible. It has important implications for plant establishment in particular, ecosystem services including flood regulation, nutrient cycling and wild species diversity and for future restoration design.
机译:盐沼由于人类活动而丧失或退化,导致重要的生态系统服务丧失,包括提供野生物种多样性,水质调节和洪水调节。作为补偿,通常在增加栖息地多样性,防洪和可持续沿海防御的立法要求的驱使下,盐沼得以恢复或重建。但是,越来越多的证据表明,恢复可能无法提供预期的生态系统服务。这通常归因于排水不良和沉积物缺氧。然而,尽管这些因素对于植物演替至关重要,但很少在恢复方案中检查其物理沉积物特征,水文和沉积物地球化学环境。这项研究提出了3D计算机X射线断层摄影技术的新颖集成,以量化沉积物的结构和孔隙度,并结合水位和地球化学数据来了解恢复前土地利用和干扰对恢复的盐沼的结构和功能的影响。这项研究结合了对英格兰东南部9个去河堤盐沼的物理沉积物特征的大规模调查,并在一个地点进行了深入研究,研究了水位,沉积物结构和沉积物地球化学环境。或盐沼中的物理/化学框架,扰动的证据包括微孔率降低,孔隙连通性和储水能力降低,地下环境与上覆洪水之间缺乏连通性以及阻碍地下水流和排水。这对沉积物地球化学环境具有重大影响。恢复后至少二十年,这种干扰是明显的,并且可能是不可逆的。它对植物的建立,特别是对生态系统服务(包括洪水调节,养分循环和野生物种多样性)以及未来的恢复设计具有重要意义。

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