[重点饮用水库天目湖显色性溶解有机质来源及组成特征]。

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2021-08-08 DOI:10.13227/j.hjkx.202012280
Lei Zhou, Yong-Qiang Zhou, Yun-Lin Zhang, Guang-Wei Zhu
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引用次数: 1

摘要

天目湖是我国重要的饮用水源地,其水质影响着生态系统的服务功能。揭示影响水处理过程的显色性溶解有机质(CDOM)的来源和组成,对维持天目湖供水安全和生态系统服务功能具有重要意义。2017年每月采集样本,采用平行因子分析(PARAFAC)分析CDOM吸光度和荧光光谱,探讨天目湖CDOM来源和组成的时空变化规律。PARAFAC结果表明,天目湖CDOM主要由微生物腐殖质样组分C1组成(44.2%±9.8%),其次为色氨酸样组分C2(29.2%±4.3%),酪氨酸样组分C3(17.2%±13.1%),陆源腐殖质样组分C4最低(9.4%±2.4%)。河口CDOM丰度a(254)和C1、C2的荧光强度显著高于下游湖区,光谱斜率s275 ~ 295显著低于下游湖区(t检验,Pa(254)),且C1、C2、C4的荧光强度夏季和秋季显著高于冬季和春季(t检验,P
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[Characterizing Sources and Composition of Chromophoric Dissolved Organic Matter in a Key Drinking Water Reservoir Lake Tianmu].

Lake Tianmu is an important source of drinking water, and its water quality can influence ecosystem service functions. Unraveling the sources and composition of chromophoric dissolved organic matter (CDOM) that can affect water treatment processes is necessary to maintain water supply safety and ecosystem service functioning of Lake Tianmu. Samples were collected monthly in 2017 and analyzed for CDOM absorbance and fluorescent spectra using parallel factor analysis (PARAFAC) to investigate the spatial and temporal variations of CDOM sources and composition in Lake Tianmu. PARAFAC results showed that CDOM in Lake Tianmu was mainly composed of a microbial humic-like component C1 (44.2%±9.8%), followed by a tryptophan-like component C2 (29.2%±4.3%), tyrosine-like component C3 (17.2%±13.1%), and terrestrial humic-like component, C4 was the lowest (9.4%±2.4%). The CDOM abundance a(254) and fluorescence intensities of C1 and C2 were significantly higher in the river mouths than in the downstream lake regions, whereas the spectral slope S275-295 was significantly lower in the river mouths (t-test, P<0.05), indicating that allochthonous inputs cause an elevated degree of humification and relative increase in the molecular weight of CDOM in the inflowing river mouths. Seasonal differences in CDOM composition were mainly ascribed to the a(254) and fluorescence intensities of C1, C2, and C4 being significantly higher in the summer and autumn than in the winter and spring (t-test, P<0.05). Our results showed that the influences of different seasons on CDOM composition comprise differences in rainfall and runoff input, as well as water temperature, thermal stratification, phytoplankton biomass, and mineralization of CDOM by light and microbes.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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