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Water Level Decline in a Reservoir: Implications for Water Quality Variation and Pollution Source Identification

机译:水库中的水位下降:对水质变化和污染源识别的影响

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摘要

Continuous water-level decline makes the changes of water quality in reservoirs more complicated. This paper uses trend analyses, wavelet analysis and principal component analysis-multiple linear regression to explore the changes and pollution sources affecting water quality during a period of continuous reservoir water level decline (from 65.37 m to 54.15 m), taking the Biliuhe reservoir as an example. The results showed that the change of water level of Biliuhe reservoir has a significant 13-year periodicity. The unusual water quality changes during the low water level period were as follows: total nitrogen continued to decrease. And iron was lower than its historical level. pH, total phosphorus, and ammonia nitrogen were higher than historical levels and fluctuated seasonally. Permanganate index increased as water level decreased after initial fluctuations. Dissolved oxygen was characterized by high content in winter and relatively low content in summer. The pollutant sources of non-point source pollution (PC1), sediment and groundwater pollution (PC2), atmospheric and production & domestic sewage (PC3), other sources of pollution (PC4) were identified. The main source of DO, pH, TP, TN, NH -N, Fe and COD were respectively PC3 (42.13%), PC1 (47.67%), PC3 (47.62%), PC1 (29.75%), PC2 (47.01%), PC1 (56.97%) and PC2 (50%). It is concluded that the continuous decline of water level has a significant impact on the changes and pollution sources affecting water quality. Detailed experiments focusing on sediment pollution release flux, and biological action will be explored next.
机译:水位持续下降使水库水质变化更加复杂。本文采用趋势分析,小波分析和主成分分析-多元线性回归的方法,以碧流河水库为例,探讨了水库连续水位下降(65.37 m至54.15 m)期间影响水质的变化和污染源。例。结果表明,碧流河水库水位变化具有明显的13年周期变化。低水位期间水质的异常变化如下:总氮持续减少。铁低于历史水平。 pH,总磷和氨氮均高于历史水平,并且季节性波动。初始波动后,高锰酸盐指数随水位降低而增加。溶解氧的特征是冬季含量高,夏季含量相对低。确定了面源污染(PC1),沉积物和地下水污染(PC2),大气和生产及生活污水(PC3),其他污染源(PC4)的污染物源。 DO,pH,TP,TN,NH-N,Fe和COD的主要来源分别为PC3(42.13%),PC1(47.67%),PC3(47.62%),PC1(29.75%),PC2(47.01%) ,PC1(56.97%)和PC2(50%)。结论是,水位的持续下降对影响水质的变化和污染源具有重大影响。接下来将探讨针对沉积物污染释放通量和生物作用的详细实验。

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