4.7 Article

Inter-annual and intra-annual variations in water quality and its response to water-level fluctuations in a river-connected lake, Dongting Lake, China

期刊

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 29, 期 10, 页码 14083-14097

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11356-021-16739-5

关键词

Water quality; Water level; Comprehensive pollution index; Dongting Lake

资金

  1. Joint Fund for Regional Innovation and Development of NSFC [U19A2051]
  2. Youth Innovation Promotion Association of CAS [Y201861]
  3. Leading Plan for Scientific and Technological Innovation of High-tech Industries in Hunan Province [2020SK2019]
  4. Key Program of Research and Development of Hunan Province [2022NK2058, 2022NK2059]
  5. Water Conservancy Science Project of Hunan Province [XSKJ2019081-05, XSKJ2019081-31, XSKJ202100-003]
  6. Youth Innovation Development Program of Changsha [kq1802026, kh1904002]

向作者/读者索取更多资源

The study on water quality in Dongting Lake from 2015 to 2018 revealed significant spatial and seasonal variations in water quality parameters, with a notable relationship between water level and water quality. The pollution level in the lake ranged from slightly to moderately polluted.
The hydrological conditions of river-connected lakes are complex primarily owing to their considerable water-level fluctuations (WLFs). Water quality in such lakes varies with hydrodynamic variations; however, their relationship is not clear. To identify the unique relationship between water level and water quality in river-connected lakes, we used the comprehensive pollution index (CPI) and regression analysis to analyze the spatiotemporal variation in water quality in Dongting Lake from 2015 to 2018 and the effects of water level on water quality. Four water quality parameters were selected: total nitrogen (TN), total phosphorus (TP), permanganate index (CODMn), and chlorophyll a (Chl-a). The results showed significant spatial variation in the lake water quality, with relatively high concentrations of TN, TP, CODMn, and Chl-a in East Dongting Lake. TN and TP decreased by 12.15% and 37.61%, respectively, from 2015 to 2018, whereas CODMn increased from 1.781 to 2.009 mg/L. Seasonally, TN and TP concentrations were low in the summer and autumn, with high concentrations in the winter and spring. In contrast, CODMn and Chl-a concentrations exhibited opposite trends. The pollution level in Dongting Lake ranged between slightly and moderately polluted, with a CPI ranging from 0.76 to 1.32 across all sampling sites during 2015-2018. The water level in Dongting Lake initially increased and, then, decreased in a year, with marked WLFs owing to seasonal shifts in precipitation and human activities. The water level had significant negative relationships with TN and TP concentrations and a significant positive relationship with CODMn concentration (p < 0.05). Based on the results, strict control of excessive external nutrient loading should be actively implemented in Dongting Lake, in addition to hydrological regulation for effective lake water quality management.

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