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基于CCME-WQI法的鄱阳湖水系乐安河水质分析

[Analysis of Water Quality of Le'an River in Poyang Lake Basin Based on CCME-WQI Method].

作者信息

Wu Yi, Wang Cheng, Wang Hua, Li Xiao-Ying, Xu Hao-Sen

机构信息

College of Environment, Hohai University, Nanjing 210098, China.

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake, Ministry of Education, College of Environment, Hohai University, Nanjing 210098, China.

出版信息

Huan Jing Ke Xue. 2024 Sep 8;45(9):5235-5243. doi: 10.13227/j.hjkx.202309243.

Abstract

As the largest freshwater lake in China, Poyang Lake plays a key role in supporting the balance of aquatic ecosystems, and the water quality of its inlet rivers affects the lake's water quality. Le'an River, a typical inlet river of Poyang Lake, was selected as the research object. Based on the water quality data of six monitoring points in the upper, middle, and lower reaches of the mainstream of Le'an River from 2012 to 2020, the CCME-WQI method was used to evaluate the water quality of the river after systematically analyzing the spatiotemporal variation of the concentration of pollutants in the mainstream of the river. Finally, the main influencing factors of the water quality of the river were extracted and analyzed according to the PCA method. The results showed that: ① The water volume upstream and downstream of the river was more seriously polluted in the pre-study time period, which was due to the presence of Dexing Copper Mine in the upstream and small and medium-sized mines and farmland downstream. ② Before 2017, the water volume downstream of Le'an River had the worst water quality, with TP and NH-N exceeding the standard rate of 43.3% and 85.0%, respectively, and the lowest WQI mean value of 86.2. After 2017, due to the effective management of pollutant discharges in the watershed, the water volume downstream of the river improved significantly and continued to be in an excellent state, and the mean value of the WQI reached 100.0. ③ The factors influencing the water quality of the mainstem of the Le'an River could be divided into four categories: human activities, seasonal factors, atmospheric deposition of pollutants, and the physical and chemical properties of the water volume itself, with human activities being the dominant factor for water quality changes at Dawuhekou and Shizhenjie, whereas the seasonal factors had the greatest influence at the remaining locations. ④ Organic matter pollution was obvious in the upper and lower Le'an River water volume, and the water volume at Dawuhekou was mainly affected by nearby mining activities, whereas the water volume at Shizhenjie was mainly affected by agriculture. Le'an River had serious organic matter pollution downstream before 2017, and mining and agricultural activities in the watershed had a high degree of impact on water quality. The treatment of mineral processing wastewater should be upgraded, and the discharge of pollutants from agriculture in the downstream of the watershed should be regulated.

摘要

作为中国最大的淡水湖,鄱阳湖在维持水生生态系统平衡方面发挥着关键作用,其入湖河流的水质影响着湖泊水质。乐安河是鄱阳湖的一条典型入湖河流,被选为研究对象。基于2012年至2020年乐安河主流上、中、下游六个监测点的水质数据,在系统分析河流主流污染物浓度时空变化后,采用CCME-WQI方法对河流水质进行评价。最后,根据主成分分析法提取并分析了河流水质的主要影响因素。结果表明:①在研究前期,河流上下游水体污染较为严重,这是由于上游存在德兴铜矿,下游存在中小型矿山和农田。②2017年以前,乐安河下游水体水质最差,总磷(TP)和氨氮(NH-N)超标率分别为43.3%和85.0%,水质质量指数(WQI)均值最低,为86.2。2017年以后,由于流域内污染物排放得到有效管控,下游水体水质显著改善并持续保持优良状态,WQI均值达到100.0。③影响乐安河干流水质的因素可分为四类:人类活动、季节因素、污染物大气沉降以及水体自身的理化性质,其中人类活动是大坞河口和石镇街水质变化的主导因素,而季节因素对其他点位影响最大。④乐安河上下游水体存在明显的有机物污染,大坞河口水体主要受附近采矿活动影响,石镇街水体主要受农业活动影响。2017年以前乐安河下游有机物污染严重,流域内采矿和农业活动对水质影响程度较高。应提升选矿废水处理水平,规范流域下游农业污染物排放。

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