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Spatial variability of organic matter molecular composition and elemental geochemistry in surface sediments of a small boreal Swedish lake

机译:瑞典北部小湖泊表层沉积物中有机物分子组成和元素地球化学的空间变异性

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The composition of sediment organic matter (OM) exerts a strong control on biogeochemical processes in lakes, such as those involved in the fate of carbon, nutrients and trace metals. While between-lake spatial variability of OM quality is increasingly investigated, we explored in this study how the molecular composition of sediment OM varies spatially within a single lake and related this variability to physical parameters and elemental geochemistry. Surface sediment samples (0–10?cm) from 42 locations in H?rsvatten – a small boreal forest lake with a complex basin morphometry – were analyzed for OM molecular composition using pyrolysis gas chromatography mass spectrometry for the contents of 23 major and trace elements and biogenic silica. We identified 162 organic compounds belonging to different biochemical classes of OM (e.g., carbohydrates, lignin and lipids). Close relationships were found between the spatial patterns of sediment OM molecular composition and elemental geochemistry. Differences in the source types of OM (i.e., terrestrial, aquatic plant and algal) were linked to the individual basin morphometries and chemical status of the lake. The variability in OM molecular composition was further driven by the degradation status of these different source pools, which appeared to be related to sedimentary physicochemical parameters (e.g., redox conditions) and to the molecular structure of the organic compounds. Given the high spatial variation in OM molecular composition within H?rsvatten and its close relationship with elemental geochemistry, the potential for large spatial variability across lakes should be considered when studying biogeochemical processes involved in the cycling of carbon, nutrients and trace elements or when assessing lake budgets.
机译:沉积物有机物(OM)的组成对湖泊的生物地球化学过程有很强的控制作用,例如那些与碳,养分和微量金属的命运有关的过程。虽然越来越多地研究了OM质量的湖间空间变异性,但我们在这项研究中探索了沉积物OM的分子组成如何在单个湖泊内发生空间变化并将这种变化与物理参数和元素地球化学相关联。使用热解气相色谱质谱法分析了H?rsvatten(一个具有复杂盆地形态的小型北方森林湖)中42个地点的表面沉积物样品(0–10?cm)的OM分子组成,分析了23种主要和微量元素的含量和生物硅。我们确定了162种属于OM不同生化类别的有机化合物(例如,碳水化合物,木质素和脂质)。发现沉积物OM分子组成的空间格局与元素地球化学之间存在密切关系。 OM的来源类型(即陆地,水生植物和藻类)的差异与湖泊的各个盆地形态和化学状态有关。这些不同来源池的降解状态进一步驱动了OM分子组成的变化,这似乎与沉积物的物理化学参数(例如氧化还原条件)和有机化合物的分子结构有关。考虑到H?rsvatten中OM分子组成的高度空间变化及其与元素地球化学的密切关系,在研究涉及碳,养分和微量元素循环的生物地球化学过程时,应考虑整个湖泊的巨大空间变异性。湖泊预算。

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