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Study on water quality purification method by aquatic plants at a reservoir for small-scale water supply

机译:小规模供水水库水生植物水质净化方法研究

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The reservoir used for water supply on Haha-jima Island had been experiencing eutrophication. In order to improve water quality an experimental hydrophytic system was set up on-site in 2007. Full-scale operations began from 2009. In this paper, the effectiveness of hydrophytes in improving water quality purification was evaluated. The amount of total nitrogen and total phosphorus that was removed was calculated from the production of plants. Estimated equations of total nitrogen and total phosphorus levels were made by using multiple regression analysis, which were highly statistically significant. Due to the limited water quality data of total nitrogen and total phosphorus concentrations, past data of other recorded measurements for water quality were used and assigned as explaining variables. Furthermore, the concentrations of past total nitrogen and total phosphorus were calculated based on these estimated equations and the state of eutrophication of the reservoir was simulated as longitudinal data. The results of this research are applicable for water quality control and management of other isolated islands, depopulated areas, and developing countries where specialized measuring instruments to determine water quality may be unavailable.
机译:哈哈岛岛上用于供水的水库一直在富营养化。为了改善水质,于2007年在现场建立了水生植物实验系统。从2009年开始全面运行。本文评估了水生植物在改善水质净化方面的有效性。从植物的生产中计算出去除的总氮和总磷的量。通过使用多元回归分析得出总氮和总磷水平的估计方程,这些方程具有高度的统计意义。由于总氮和总磷浓度的水质数据有限,因此使用了其他记录的水质测量数据作为解释变量。此外,根据这些估计方程式,可以计算出过去的总氮和总磷的浓度,并将储层的富营养化状态作为纵向数据进行模拟。这项研究的结果适用于其他偏远岛屿,人口稀少地区和发展中国家的水质控制和管理,这些国家可能没有确定水质的专门测量仪器。

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