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Spatial changes in molecular composition of dissolved organic matter in the Yangtze River Estuary: Implications for the seaward transport of estuarine DOM

机译:长江河口溶解有机物分子组成的空间变化:对河口河口的海报的影响

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摘要

The complexity of dissolved organic matter (DOM) limits our understanding of the estuarine carbon cycle. This study adopted a combination of bulk carbon isotope, optical techniques and ultra-high resolution mass spectrom-etry to study the spatial heterogeneity and compositional variations of DOM across a latitudinal transect of the Yangtze River Estuary (YRE). Results show that the whole section of YRE received high abundance of protein-like C4 fluorescent component (0.66 ± 0.08 R.U.) and high relative abundance of aliphatic compounds and pep-tides (8.28 ± 1.46%) from phytoplankton. which would contribute to the bioavailable DOM pool of the Eastern China Sea (ECS). However, multivariate analysis indicated that polycyclic aromatics and polyphenols from the Yangtze River experienced a significant decrease of 5% within the turbidity zone, creating a significant decrease of 0.08 in aromaticity index and modulating DOM content and compositions within the YRE. 1837 molecular formulae were identified to track dynamic behaviors of terrestrial DOM in the YRE. Molecular imprints showed the removal of terrestrial molecules in the turbidity zone indicated by the decrease of 753 in molecular quantity, when water masses mixing diluted the abundance of aromatic compounds. Adsorption and flocculation could serve important mechanisms to remove terrestrial DOM, promoting the burial of terrestrial DOM within estuarine sediments. Besides, some terrestrial molecular formulae were also detected in the ECS, suggesting the potential contribution of terrestrial DOM to the carbon stock of open seas after experiencing physical and photochemical transformations. This research provides a comprehensive insight into spatial variations of estuarine DOM composition, underlining the important role of estuaries in sorting and transporting DOM.
机译:溶解有机物(DOM)的复杂性限制了我们对酯碳循环的理解。本研究采用散装碳同位素,光学技术和超高分辨率质谱 - etry的组合,以研究横跨长江口(YRE)的纬度横跨纬度横断面的空间异质性和组成变化。结果表明,Yre的整个部分接受了高丰度的蛋白质C4荧光组分(0.66±0.08 r.U.)和浮游植物的高相对丰富的脂族化合物和PEP-TIDE(8.28±1.46%)。这将有助于中国东部海洋(ECS)的生物可利用主义池。然而,多变量分析表明,来自长江的多环芳烃和多酚在浊度区内经历了5%的显着降低,在芳香性指数中产生了0.08的显着降低,并调节了Yre内的DOM含量和组合物。鉴定了1837年的分子式,以跟踪YRE中陆地DOM的动态行为。分子印记显示,当水质量混合稀释的芳族化合物稀释时,分子印记显示出通过分子量减少的浊度区中的浊度分子。吸附和絮凝可以用于去除陆地DOM的重要机制,促进河口沉积物内的陆地DOM。此外,在ECS中也检测到一些陆地分子公式,暗示在经历物理和光化学转变后陆地DOM对海洋碳储存的潜在贡献。本研究综合了解河口DOM组成的空间变化,强调河口在排序和运输DOM中的重要作用。

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  • 来源
    《Science of the total environment》 |2021年第10期|143531.1-143531.9|共9页
  • 作者单位

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China;

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou China;

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Changping District Beijing China;

    School of Marine Sciences Sun Yat-sen University Zhuhai China;

    College of Marine Sciences Tongji University Shanghai China;

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China;

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China;

    School of Marine Science and Policy University of Delaware Newark DE United States;

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China;

    State Key Laboratory of Satellite Ocean Environment Dynamics Second Institute of Oceanography Ministry of Natural Resources Hangzhou China;

    State Key Laboratory of Heavy Oil Processing China University of Petroleum Changping District Beijing China;

    Organic Geochemistry Unit Key Laboratory of Geoscience Big Data and Deep Resource of Zhejiang Province School of Earth Sciences Zhejiang University Hangzhou China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Yangtze River Estuary; Dissolved organic matter; Optical properties; Molecular composition; Storing and transporting;

    机译:长江河口;溶解有机物;光学性质;分子组成;储存和运输;

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