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Influence of organic carbon decomposition on calcite dissolution in surficial sediments of a freshwater lake

机译:有机碳分解对淡水湖泊表层沉积物中方解石溶解的影响

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A multi-sensor approach was used to determine high-resolution porewater gradients of Ca~(2+), CO_3~(2-), H~+ and O_2 in sediment cores along a depth transect from eutrophic Lake Sempach (Switzerland). We quantified the reproducibility of measurements and analyzed concentration profiles with a one-dimensional diffusion-reaction model to quantify benthic fluxes. Calculation of oxic respiration in the sediment showed that almost all settled organic carbon was degraded with O_2 at shallow depths while only 28% was decomposed aerobically at the deepest location. Fluxes were highest at 8m depth (24.4 mmol m~(-2)d~(-1)) and lowest at the deepest site of 85m (7.1 mmol m~(-2)d~(-1)). Dissolution of calcite from the sediment was also depth dependent. A total of 1.1 mmol m~(-2)d~(-1) was found for the shallowest site, and values decreased with depth to 0.6 mmol m~(-2)d~(-1) at the deepest site.
机译:采用多传感器方法,确定了富营养化的森帕赫湖(瑞士)沿一条深度断面的沉积物芯中Ca〜(2 +),CO_3〜(2-),H〜+和O_2的高分辨率孔隙水梯度。我们对测量值的可重复性进行了量化,并使用一维扩散反应模型对浓度分布进行了分析,以量化底流。沉积物中的有氧呼吸的计算表明,在浅深度处,几乎所有沉淀的有机碳都被O_2降解,而在最深处,只有28%的有机碳被需氧分解。通量在8m深度最高(24.4 mmol m〜(-2)d〜(-1)),在最低深度85m最低(7.1 mmol m〜(-2)d〜(-1))。方解石从沉积物中的溶解也取决于深度。最浅处的总含量为1.1 mmol m〜(-2)d〜(-1),最深处的值降低至0.6 mmol m〜(-2)d〜(-1)。

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