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Water quality assessment of an urban river receiving tail water using the single-factor index and principal component analysis

机译:使用单因素指数和主要成分分析,接受尾水的城市河流水质评估

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Tail water from wastewater treatment plants (WWTP) serves as a major supplementary water source for scenic water bodies, whose water quality is one of the major focuses of public and scientific inquiries. This study investigated the temporal and spatial variations in water quality of Tangxihe River, a eutrophic urban river receiving tail water from a nearby WWTP in Hefei City, using the single-factor index (SFI) and principal component analysis (PCA). The results of SFI indicated that the most important parameters responsible for low water quality were total nitrogen (TN) and ammonia (NH4+-N). PCA showed that tail water from the WWTP greatly reduced water quality, as demonstrated by the significantly increased SFIs and integrated principal component values (F values) of the sampling points around the drain outlet of the WWTP (T-3, T-4 and T-5). The sampling points located at the upstream of the river (T-1) and up the water-gate of Chaohu Lake (T-6) had negative F values, indicating relatively higher water quality. In addition, the season had a significant effect on the water quality of the river. Moreover, we discuss measures to improve the water quality of urban rivers in order to maintain their ecological functions.
机译:从污水处理厂(污水处理厂),尾水作为主要补充水源景观水体,其水质是公众和科学探索的主要焦点之一。该研究调查了时间和空间变化在Tangxihe河,富营养化城市河流从合肥市附近WWTP接收尾水的水质,使用单因子指数(SFI)和主成分分析(PCA)。 SFI的结果表明,负责低水质的最重要的参数是总氮(TN)和氨(NH 4 + N)。 PCA表明,尾水从污水处理厂大大减少水的质量,通过围绕污水处理厂(T-3,T-4和T的排出口的采样点的显著增加的SFI和集成主成分的值(F值)所证明-5)。位于河(T-1)和高达巢湖(T-6)的水栅的上游的取样点有负的F值,表明相对较高的水的质量。此外,本赛季对河流的水质有显著的效果。此外,我们讨论如何采取措施改善城市河流的水质,以维持其生态功能。

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