School of Environmental and Chemical Engineering, Shanghai University, Shanghai, 200444, China E-mail:
Zhejiang Environmental Monitoring Engineering Co., Ltd, Hangzhou, 310000, China.
Water Sci Technol. 2024 Aug;90(3):995-1008. doi: 10.2166/wst.2024.267. Epub 2024 Aug 2.
The depth-dependent dynamics of dissolved organic matter (DOM) structure and humification in an artificial lake limits the understanding of lake eutrophication and carbon cycling. Using fluorescence regional integration (FRI) and parallel factor analysis (PARAFAC) models to analyze the 3D fluorescence spectroscopy dataset, we revealed the depth-dependent structure and vertical distribution of DOM in the estuarine and center regions of Lake Hongfeng. The percentage fluorescence response () showed humic acid is an important part of DOM in Lake Hongfeng. Fluorescence results show that the fulvic-like and protein-like materials in HF1-DOM located at the estuarine position showed greater variation in the middle stage, probably due to human influence and sediment suspension. Fluorescence index (/ and FI/FI) can be used to indicate the degree of humification of DOM in artificial lakes. Results of each index show that the estuary is more affected by human activities, and the humification degree is significantly lower than that of the center of the lake. The evaluation index system of the humification degree of artificial lake established in this study can effectively predict the eutrophication state of the typical area of artificial lake and deeply understand the possible important influence of human activities on the carbon cycle of lake.
人工湖中溶解有机物(DOM)结构和腐殖化的深度依赖性动态限制了对湖泊富营养化和碳循环的理解。本研究使用荧光区域积分(FRI)和平行因子分析(PARAFAC)模型分析了红枫湖河口区和湖心区的三维荧光光谱数据集,揭示了 DOM 的深度依赖性结构和垂直分布。荧光指数(/ 和 FI/FI)可用于指示人工湖 DOM 的腐殖化程度。各指数的结果表明,河口受人类活动的影响更大,腐殖化程度明显低于湖心。本研究建立的人工湖腐殖化程度评价指标体系能有效预测典型人工湖富营养化状态,深入理解人类活动对湖泊碳循环可能产生的重要影响。