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中国洞庭湖连通河湖水水质的年际和年内变化及其对水位波动的响应。

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

机构信息

Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha, 410125, People's Republic of China.

Dongting Lake Station for Wetland Ecosystem Research, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha, 410125, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Feb;29(10):14083-14097. doi: 10.1007/s11356-021-16739-5. Epub 2021 Oct 2.

Abstract

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 (COD), and chlorophyll a (Chl-a). The results showed significant spatial variation in the lake water quality, with relatively high concentrations of TN, TP, COD, and Chl-a in East Dongting Lake. TN and TP decreased by 12.15% and 37.61%, respectively, from 2015 to 2018, whereas COD 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, COD 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 COD 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.

摘要

河网湖泊的水文条件较为复杂,主要是因为其水位波动较大(WLFs)。此类湖泊的水质随水动力变化而变化,但两者之间的关系并不明确。为了确定河网湖泊水位与水质之间的独特关系,我们采用综合污染指数(CPI)和回归分析方法,分析了 2015 年至 2018 年洞庭湖的水质时空变化及其水位对水质的影响。选择了四个水质参数:总氮(TN)、总磷(TP)、高锰酸盐指数(COD)和叶绿素 a(Chl-a)。结果表明,湖泊水质存在显著的空间差异,东洞庭湖的 TN、TP、COD 和 Chl-a 浓度相对较高。2015 年至 2018 年,TN 和 TP 分别下降了 12.15%和 37.61%,而 COD 则从 1.781 增加到 2.009mg/L。季节上,TN 和 TP 浓度在夏季和秋季较低,冬春季较高。相反,COD 和 Chl-a 浓度则呈现相反的趋势。洞庭湖的污染水平处于轻度和中度污染之间,2015 年至 2018 年期间,所有采样点的 CPI 均在 0.76 至 1.32 之间。洞庭湖水位呈先升后降的变化趋势,年际间水位波动较大,主要是由于降水和人类活动季节性变化引起的。水位与 TN 和 TP 浓度呈显著负相关,与 COD 浓度呈显著正相关(p<0.05)。基于研究结果,除了进行水文调节以有效管理湖泊水质外,还应积极实施对洞庭湖过度外部营养负荷的严格控制。

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