异龙湖入湖河流及湖体氮、磷浓度时空分布特征

Spatiotemporal Variation of Total Nitrogen and Total Phosphorus in Yilong Lake and Its Inlets

  • 摘要: 异龙湖流域农业活动的氮、磷营养物质输入导致异龙湖持续的富营养化, 入湖河流及湖体氮、磷浓度的时空分布特征有待明晰。本研究通过分析异龙湖流域5条主要入湖河流、湖体水样及土样氮、磷情况, 探讨河流营养元素输入对异龙湖氮、磷浓度变化规律的影响。结果表明: (1)异龙湖流域呈氮高(2.22 mg·L-1)磷低(0.036 mg·L-1)的特征, 城北河和龙港河是影响异龙湖湖体总氮(TN)和总磷(TP)的最主要入湖河流。(2)不同水期入湖河流的TN和TP浓度与土壤氮、磷含量呈显著相关关系(P < 0.05)。(3)降雨对湖体TN和TP浓度的分布及入湖河流TN和TP浓度有显著影响, 并呈现出明显的空间分布特点。丰水期城河、大水河和龙港河入湖河流TN浓度显著高于平水期, 且湖体TN和TP浓度分布呈"中间低、两端高"的态势。本研究可为有针对性地控制异龙湖污染提供科学策略。

     

    Abstract: Nutrient input from agricultural activities contributes significantly to the eutrophication of Yilong Lake in the plateau ecosystem of Yunnan Province, China. This study investigated nutrient spatiotemporal distribution patterns in this water system through nitrogen (N) and phosphorus (P) concentration monitoring during the dry and wet seasons in 2023. Water and soil samples were collected systematically from five major inflow rivers and corresponding lake areas of the Yilong Lake basin. The results show the status of N enrichment (total N: 2.22 mg·L-1) coupled with P limitation (total P: 0.036 mg·L-1); the primary contributors to lake nutrient loading are the Chengbei and Longgang rivers. Riverine TN/TP ratios and watershed soil nutrient contents were significantly correlated (P < 0.05) across different hydrological periods. Variable precipitation led to spatial heterogeneity in nutrient content, including higher wet-season TN levels in the Chenghe, Dashui, and Longgang rivers compared to the dry season, as well as elevated nutrient concentrations at the northern and southern extremes of the lake compared with central regions. These findings provide critical spatiotemporal benchmarks for targeted pollution control strategies and establish a scientific basis for the integrated management of shallow eutrophic lakes in plateau ecosystems.

     

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