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The cascade construction of artificial ponds as a tool for urban stream restoration - The use of benthic diatoms to assess the effects of restoration practices

机译:人工池塘的梯级建设作为城市河流恢复的工具-使用底栖硅藻评估恢复做法的效果

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A series of cascade artificial ponds were constructed to improve the ecological status of the stream To evaluate the effects of restoration practices, a bioassessment, based on phytobenthic algae - the diatoms, was made. Hierarchical Cluster Analysis (HCA) and Principal Component Analysis (PCA) of diatom assemblages allowed for evaluating the influence of a series of cascade artificial ponds on stream integrity. To reveal which environmental factors had the greatest influence on shaping diatom assemblages, the B10-ENV procedure was used, and in order to examine whether these factors had equal influence on diatoms along the stream, Redundancy Analysis (RDA) was used. The analysis of diatom assemblages allowed for the calculation of the diatom indices in order to assess the water quality and the ecological status of the stream. Artificial ponds constructed on the stream had significant effects on the integrity of the stream ecosystem. Diatom assemblages characteristic of stream habitats were disrupted by the species from ponds. HCA and PCA revealed that the stream was clearly divided into three sections: ponds, stream parts under the influence of ponds, and stream parts isolated from ponds. The ponds thus altered stream environmental conditions. Benthic diatom assemblages were affected by a combination of four environmental factors: the concentration of ammonium ions, dissolved oxygen, conductivity, and the amount of total suspended material in the water. These factors, together with water pH, had a diverse influence on diatom assemblages alongside the stream, which was caused by a series of cascade ponds. In theory, this restoration practice should restore the stream close to its natural state, but bioassessment of the stream ecosystem based on diatoms revealed that there was no improvement of the ecological status alongside the stream. The construction of artificial ponds disrupted stream continuity and altered the character of the stream ecosystem.
机译:为了改善河流的生态状况,建造了一系列的级联人工池塘。为了评估恢复措施的效果,基于植物底栖藻类-硅藻进行了生物评估。硅藻组件的层次聚类分析(HCA)和主成分分析(PCA)可以评估一系列级联人工池对河流完整性的影响。为了揭示哪些环境因素对硅藻组装体的影响最大,使用了B10-ENV程序,为了检查这些因素是否对沿流的硅藻产生同等影响,使用了冗余分析(RDA)。对硅藻集合体的分析允许计算硅藻指数,以评估溪流的水质和生态状况。在河流上建造的人工池塘对河流生态系统的完整性有重大影响。河流中的物种破坏了河流生境的硅藻组合。 HCA和PCA显示,该溪流明显分为三个部分:池塘,在池塘影响下的溪流部分以及与池塘隔离的溪流部分。池塘因此改变了溪流的环境条件。底栖硅藻的组装受以下四个环境因素的影响:铵离子的浓度,溶解氧,电导率和水中总悬浮物的量。这些因素,加上水的pH值,对溪流中的硅藻集合体产生了多种影响,这是由一系列级联池塘引起的。从理论上讲,这种恢复做法应该使河流恢复到接近自然状态,但是基于硅藻的河流生态系统生物评估显示,河流的生态状况没有改善。人工池塘的建设破坏了河流的连续性并改变了河流生态系统的特性。

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