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[Identifying Seasonal Variation of Nitrate Sources in Mountainous Rivers at the Qiandao Lake Basin Based on Nitrogen and Oxygen Isotopes].

硝酸盐 环境科学 构造盆地 流域 氧同位素 水文学(农业) 氮气 氮同位素 稳定同位素比值 海洋学 生态学 地质学 地理 化学 生物 地貌学 地球化学 物理 地图学 岩土工程 有机化学 量子力学
作者
Zining Zhang,Hai Xu,Wei Jiang,Xu Zhan,Guangwei Zhu,Hongwei Sun,Yu Qiu,Yuanyi Wang,Mingjie Wu,Yu‐Xing Liu,Huiyun Li,Mengyuan Zhu,Boqiang Qin,Yunlin Zhang
出处
期刊:PubMed [National Institutes of Health]
卷期号:46 (4): 2232-2241
标识
DOI:10.13227/j.hjkx.202403170
摘要

Qiandao Lake is an important source of drinking water in the Yangtze River Delta, and its ecological environment is of great strategic significance to the surrounding areas. To identify the sources and spatial distribution characteristics of nitrate (NO3--N) pollution in the Qiandao Lake, we conducted, for the first time, the collection of water samples from four typical mountainous inlet river basins in the Qiandao Lake Basin, analyzed the concentrations of NO3--N, and resolved different sources and their contribution in each water system by combining the δ15N-NO3- and δ18O-NO3- dual stable isotope analysis in R (SIAR) model. The results showed that: ① Nitrogen concentrations in the different watersheds were relatively low, with mean total nitrogen (TN) levels ranging from 0.99 to 4.31 mg·L-1. NO3--N emerged as the main nitrogen source, and conspicuous disparities were observed in NO3--N concentrations across the four rivers, consistently demonstrating a pattern of spring > winter > summer > autumn, of which the NO3--N concentration during spring could be up to 3.2 times of that observed during autumn. ② The values of δ15N-NO3- and δ18O-NO3- in each watershed ranged from 1.52‰ to 14.29‰ and from -2.76‰ to 10.13‰, respectively. ③ All four rivers showed a greater proportion of fertilizer and soil nitrogen during spring and summer, which accounted for approximately 25% to 51% and 23% to 39%, respectively, and a greater proportion of domestic sewage during autumn and winter, which accounted for approximately 26% to 67%. The study showed that the main source of NO3--N pollution in the Qiandao Lake Basin was agricultural non-point source pollution, and some variabilities were also observed in NO3--N pollution in different land-use type areas. NO3--N pollution contributions remained relatively stable across the larger basin area, while exhibiting significant fluctuations in the smaller basin area. This work analyzed the main sources of NO3--N in the Qiandao Lake Basin, providing a basis for water quality management and pollution source control in this area.

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