State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, PR China.
Sci Total Environ. 2018 Jan 15;612:914-922. doi: 10.1016/j.scitotenv.2017.08.293. Epub 2017 Sep 5.
Lake Taihu Basin, one of the most developed regions in China, has received considerable attention due to its severe pollution. Our study provides a clear understanding of the water quality in the rivers of Lake Taihu Basin based on basin-scale monitoring and a water quality index (WQI) method. From September 2014 to January 2016, four samplings across four seasons were conducted at 96 sites along main rivers. Fifteen parameters, including water temperature, pH, dissolved oxygen (DO), conductivity, turbidity (tur), permanganate index (COD), total nitrogen, total phosphorus, ammonium (NH-N), nitrite, nitrate (NO-N), calcium, magnesium, chloride, and sulfate, were measured to calculate the WQI. The average WQI value during our study period was 59.33; consequently, the water quality was considered as generally "moderate". Significant differences in WQI values were detected among the 6 river systems, with better water quality in the Tiaoxi and Nanhe systems. The water quality presented distinct seasonal variation, with the highest WQI values in autumn, followed by spring and summer, and the lowest values in winter. The minimum WQI (WQI), which was developed based on a stepwise linear regression analysis, consisted of five parameters: NH-N, COD, NO-N, DO, and tur. The model exhibited excellent performance in representing the water quality in Lake Taihu Basin, especially when weights were fully considered. Our results are beneficial for water quality management and could be used for rapid and low-cost water quality evaluation in Lake Taihu Basin. Additionally, we suggest that weights of environmental parameters should be fully considered in water quality assessments when using the WQI method.
太湖流域是中国最发达的地区之一,由于其严重的污染问题而备受关注。我们的研究通过流域尺度的监测和水质指数(WQI)方法,对太湖流域河流的水质进行了清晰的了解。2014 年 9 月至 2016 年 1 月,在四个季节共进行了四次采样,在主要河流的 96 个地点进行了采样。共测量了 15 个参数,包括水温、pH 值、溶解氧(DO)、电导率、浊度(tur)、高锰酸盐指数(COD)、总氮、总磷、铵(NH-N)、亚硝酸盐、硝酸盐(NO-N)、钙、镁、氯和硫酸盐,以计算 WQI。在我们的研究期间,平均 WQI 值为 59.33,因此水质被认为是“中等”。6 个水系的 WQI 值存在显著差异,其中苕溪和南溪河的水质较好。水质呈现出明显的季节性变化,秋季的 WQI 值最高,其次是春季和夏季,冬季最低。最低 WQI(WQI)是基于逐步线性回归分析开发的,由五个参数组成:NH-N、COD、NO-N、DO 和 tur。该模型在代表太湖流域水质方面表现出色,尤其是在充分考虑权重时。我们的研究结果有利于水质管理,并可用于太湖流域快速和低成本的水质评估。此外,我们建议在使用 WQI 方法进行水质评估时,应充分考虑环境参数的权重。