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Installation of an Artificial Vegetating Island in Oligomesotrophic Lake Paro Korea

机译:在韩国Oligo中营养湖公园中安装了人工植物岛

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摘要

After cut off of inflowing water, Lake Paro, an oligomesotrophic lake lost littoral zone, an important region for the aquatic ecosystem. For the first step of restoration, the artificial vegetation island was installed. The concentration of nutrients in lake water was not sufficient for the growth of macrophyte as total phosphate was ranged from 58 to 83 μg L−1. In order to overcome this problem, the hydrophobic substratum for bacterial attachment was selected as buoyant mat material of the artificial vegetation island. In this medium, total phosphate and total nitrogen were ranged from 190 to 1,060 μg L−1 and from 4.9 to 9.1 mg L−1, respectively. These concentrations were high enough for macrophytes growth. After launching 1,800 m2 of AVI in Lake Paro, the macrophytes, Iris pseudoacorus and Iris ensata, grew well after five years of launching without the addition of fertilizer. Furthermore, fishes were plentiful under the artificial vegetation island, and ducks were observed on the artificial vegetation island. Bacteria using sunlight as energy source and self-designed ecotechnology can be used as an alternative method for the restoration of disturbed littoral zone in oligo-mesotrophic lakes.
机译:切断流入水后,低营养营养型湖泊帕罗湖失去了沿岸带,这是水生生态系统的重要区域。对于恢复的第一步,安装了人工植被岛。湖泊水中养分的浓度不足以使大型植物生长,因为总磷酸盐的范围为58至83μgL -1 。为了克服该问题,选择用于细菌附着的疏水性基质作为人工植被岛的浮垫材料。在该介质中,总磷酸盐和总氮的范围分别为190至1,060μgL -1 和4.9至9.1μgL -1 。这些浓度足以使大型植物生长。在帕罗湖上发射了1800μm 2 的AVI之后,大型植物植物Iris pseudoacorus和Iris ensata在不添加肥料的情况下进行了五年的发射后生长良好。此外,在人工植被岛下的鱼类很多,在人工植被岛上观察到的鸭子。利用阳光作为能源的细菌和自行设计的生态技术可以用作恢复中低营养湖泊中受干扰的沿海带的替代方法。

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