首页> 外文期刊>The Science of the Total Environment >Optical and molecular signatures of dissolved organic matter in Xiangxi Bay and mainstream of Three Gorges Reservoir, China: Spatial variations and environmental implications
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Optical and molecular signatures of dissolved organic matter in Xiangxi Bay and mainstream of Three Gorges Reservoir, China: Spatial variations and environmental implications

机译:中国三峡水库和湘西湾溶解有机质的光学和分子特征:空间变化和环境影响

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With the on-going boom in the construction of dam reservoirs all over the world, the sources and composition of dissolved organic matter (DOM) in fluvial networks are expected to be altered. Considering the importance of DOM as a key biogeochemical component in inland waters, this might bring important ecological and environmental influences. However, limited information is available on the molecular composition of DOM in dam reservoirs. In this study, the spatial characteristics of DOM composition were investigated in Xiangxi tributary and mainstream of the Three Gorges Reservoir (TGR), the largest freshwater reservoir in the world. The concentration alteration of conservative cations revealed the water intrusion from mainstream into Xiangxi tributary, which mainly controlled the hydrological gradient. One tyrosine-like (C4), one tryptophan-like (C2), and two humic-like (C1 and C3) fluorescent components were identified in fluorescent DOM (FDOM) by parallel factor analysis (PAFACAC), potentially indicating algal, anthropogenic, and terrestrial inputs, respectively. Decreasing trends of C1, C3 and C4 components and an increasing trend of C2 component were observed from Xiangxi tributary to mainstream, indicating higher terrestrial and algal inputs but lower anthropogenic inputs in Xiangxi tributary compared to mainstream. The Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) characterization further revealed substantial heterogeneity of DOM at the molecular level. Interestingly, S-containing compounds related to synthetic surfactants were consistently detected, and their relative abundances showed an increasing trend from Xiangxi tributary to mainstream, in agreement with the distribution of the anthropogenic derived C2 component. Meanwhile, numerous lignin-like S-containing compounds were identified, likely the result of the incorporation of sulfide ions to lignin-like CHO compounds. This study represents the first molecular level characterization of DOM in the TGR system, which should aid the design and implementation of more detailed future studies. (C) 2018 Elsevier B.V. All rights reserved.
机译:随着世界各地大坝水库建设的持续繁荣,预计河流网络中溶解有机物(DOM)的来源和组成将发生变化。考虑到DOM作为内陆水域中重要的生物地球化学成分的重要性,这可能会带来重要的生态和环境影响。但是,关于大坝水库中DOM分子组成的信息很少。在这项研究中,调查了世界最大的淡水水库三峡水库(TGR)的湘西支流和主流的DOM组成的空间特征。保守阳离子的浓度变化表明,水从主流侵入湘西支流,主要控制了水文梯度。通过平行因子分析(PAFACAC)在荧光DOM(FDOM)中鉴定出一种酪氨酸样(C4),一种色氨酸样(C2)和两种腐殖质样(C1和C3)荧光成分,这可能表明藻类,人为,和地面输入。从湘西支流到主流,C1,C3和C4组分下降趋势,而C2组分增加,表明湘西支流的陆地和藻类输入量较高,而人为输入量则低于主流。傅立叶变换离子回旋共振质谱(FT-ICR MS)表征进一步揭示了DOM在分子水平上的实质异质性。有趣的是,与合成表面活性剂相关的含S化合物被一致地检测到,并且其相对丰度显示出从湘西支流到主流的增加趋势,与人为衍生的C2组分的分布一致。同时,鉴定出许多含木质素样S的化合物,这很可能是硫化物离子掺入木质素样CHO化合物的结果。这项研究代表了TGR系统中DOM的第一个分子水平表征,这将有助于设计和实施更详细的未来研究。 (C)2018 Elsevier B.V.保留所有权利。

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