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Influence of buried Ulva lactuca on denitrification in permeable sediments

机译:埋藏石Ul对渗透性沉积物中反硝化作用的影响

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Macroalgae can form extensive blooms in coastal areas receiving high nitrogen loading, and a large fraction of this biomass is likely to be degraded in permeable sediments. We undertook a series of experiments investigating the influence of buried macroalgae Ulva lactuca on denitrification in permeable sediments using flow-through reactor and flume experiments. Our results showed that in flow-through chamber experiments, the presence of buried macroalgae generally did not enhance rates of denitrification, although an enhancement of coupled nitrification-denitrification was observed at intermediate porewater flow rates. 2D planar optode images revealed that leaching dissolved organic carbon (DOC) from buried macroalgal sheets resulted in a plume of hypoxic-anoxic sediment that had only a very small stimulating influence on denitrification rates (observed rates range from 0.1 to 3 μmol m~(-2) h~(-1)). Flume experiments showed that buried macroalgae sheets had a pronounced effect on porewater flow fields within the sediment, and that the effect on denitrification was highly dependent upon the position of the buried macroalgae relative to ripple geometry. Overall, our results showed that rates of denitrification were orders of magnitude lower in flume experiments with realistic flow fields compared to column experiments with artificial flow fields, in agreement with previous work. We conclude that the presence of buried macroalgae does not significantly stimulate denitrification rates within permeable silicate sands.
机译:大型藻类会在接受高氮负荷的沿海地区形成大量的水华,大部分此类生物质可能会在可渗透的沉积物中降解。我们进行了一系列实验,使用流通式反应器和水槽实验研究了埋藏大型藻类石Ul对渗透性沉积物中反硝化作用的影响。我们的结果表明,在流通室实验中,虽然在中等孔隙水流速下观察到了耦合硝化-反硝化作用的增强,但埋没的大型藻类的存在通常不会提高反硝化率。二维平面光电图像显示,从埋藏的大型藻类板中浸出溶解的有机碳(DOC)会产生低氧-缺氧沉积物羽流,对反硝化速率的影响很小(观测速率范围为0.1至3μmolm〜(- 2)h〜(-1))。水槽实验表明,埋藏的巨藻薄片对沉积物内的孔隙水流场具有明显的影响,而反硝化作用高度依赖于埋藏的巨藻相对于波纹几何形状的位置。总体而言,我们的结果表明,与采用人工流场的柱实验相比,在具有实际流场的水槽实验中,反硝化率要低几个数量级,这与以前的工作相符。我们得出的结论是,埋藏的大型藻类的存在不会显着刺激渗透性硅酸盐砂土中的反硝化速率。

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