Is water quality better in wet years or dry years in river-connected lakes? A case study from Dongting Lake, China

环境科学 水文学(农业) 水质 水循环 水位 污水 中国 气候变化 自然地理学 生态学 地理 地质学 生物 环境工程 考古 岩土工程 地图学
作者
Mingming Geng,Kelin Wang,Nan Yang,Zhan Qian,Feng Li,Yeai Zou,Xinsheng Chen,Zhong-Shan Deng,Yonghong Xie
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:290: 118115-118115 被引量:16
标识
DOI:10.1016/j.envpol.2021.118115
摘要

Water quality is essential for lake systems, which are not only influenced by climate change and human activities but are also controlled by high-frequency hydrological rhythms. However, the differences in water quality during different hydrological periods have not been addressed in detail. Here, a 15-year water quality dataset (2004-2018) was selected to explore the variation trends and their relationship with water level in different hydrological periods in Dongting Lake, a typical river-connected lake in China. The hydrological periods were classified into hydrological years and hydrological phases based on the characteristics of water level fluctuations. The results showed that annual variation in the water level in Dongting Lake fluctuated between 23.63 and 25.81 m from 2004 to 2018, and also displayed considerable water level differences ranging from 7.66 m (dry years) to 9.97 m (wet years) within a year. The water level of the lake phase showed significant differences among the different hydrological years. The concentration of TP, CODMn, and NH3-N showed significant decreasing trends, whereas that of TN showed a significant increasing trend from 2004 to 2018. The TN concentration in wet years was significantly higher than that in dry years, which could be attributed to sewage discharge and hydrological conditions. The contributions of the lake phase to the total sewage discharge successively decreased from 64.54% in wet years to 59.47% in dry years, while the river phase showed the opposite trends, ranging from 35.46% to 40.53%, reflecting the strong relationship between water regimes and pollutant fluxes. A regression analysis indicated the different responses of water quality to water level fluctuations over hydrological years, and water quality in different hydrological phases clearly separated the lake and river phases, highlighting the influence of water level fluctuations on water quality within a year. To maintain the water quality of Dongting Lake, the control of external load should not be relaxed, and hydrological regulation should be actively carried out within each year.
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