Response of Dissolved Organic Matter to Thermal Stratification and Carbon Sink Indication in Drinking Water Reservoirs: Insights from Molecular Weight, Spectroscopy, and Watershed Analysis

IF 4.3 Q1 ENVIRONMENTAL SCIENCES ACS ES&T water Pub Date : 2025-03-27 DOI:10.1021/acsestwater.4c01101
Chenbin Wu, Yuting Zhao, Jiafeng Zhang, Kun Shi, Shilei Zhou* and Beibei Chai, 
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Abstract

Dissolved organic matter (DOM) plays an important role in drinking water reservoirs. However, the responses of DOM sources and properties to thermal stratification in watersheds with different molecular weights are not well understood. Using the six reservoirs of Luan River, Daqing River, and Hutuo River watersheds as subjects, the distribution characteristics of DOM with different molecular weights and basins were investigated through spectroscopy. The results indicated that the thermoclines in the Wangkuai and Gangnan reservoirs were the thickest (14 m). Three humic-like substances (C1, C2, and C4) and one protein-like substance (C3) were also detected. The fluorescence intensity of the DOM in the epilimnion and thermocline layers was also higher. There was a significant correlation (P < 0.05) between the chemical and thermal stratification indices of the C3 and C4 components. There are significant differences in the stratification of low molecular weight C3 and C4, Chla, BOD5, NO3, and TN. Environmental factors (T, pH, and DO) were the primary factors affecting the DOM composition in the vertical direction. N and Chla are factors that influence the concentration and sources of DOM in different watersheds. This conclusion enhanced our understanding of the distribution of DOM and carbon sinks.

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饮用水水库中溶解有机质对热分层和碳汇指示的响应:来自分子量、光谱和流域分析的见解
溶解有机质(DOM)在饮用水水库中起着重要的作用。然而,在不同分子量的流域,DOM的来源和性质对热分层的响应尚不清楚。以栾河、大清河和滹沱河流域6个水库为研究对象,利用光谱技术研究了不同分子量DOM在不同流域的分布特征。结果表明,王快和岗南储层的温斜层厚度最大(14 m),同时还检测到3种腐殖质样物质(C1、C2和C4)和1种蛋白质样物质(C3)。表层和温跃层DOM的荧光强度也较高。有显著相关(P <;C3和C4组分的化学分层指数与热分层指数之间存在显著性差异(0.05)。低分子量C3和C4、Chla、BOD5、NO3 -和TN的分层存在显著差异,环境因子(T、pH和DO)是影响垂直方向DOM组成的主要因素。N和Chla是影响不同流域DOM浓度和来源的因素。这一结论增强了我们对DOM和碳汇分布的认识。
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