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Quantifying denitrification in rippled permeable sands through combined flume experiments and modeling

机译:通过结合水槽实验和建模量化波纹状渗透性砂中的反硝化作用

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摘要

We measured denitrification in permeable sediments in a sealed flume tank with environmentally representative fluid flow and solute transport behavior using novel measurements. Numerical flow and reactive transport models representing the flume experiments were implemented to provide mechanistic insight into the coupled hydrodynamic and biogeochemical processes. There was broad agreement between the model results and experimental data. The model showed that the coupling between nitrification and denitrification was relatively weak in comparison to that in cohesive sediments. This was due to the direct advective transport between anoxic pore water and the overlying water column, and little interaction between the mostly oxic advective region and the underlying anoxic region. Denitrification was therefore mainly fueled by nitrate supplied from the water column. This suggests that the capacity of permeable sediments with nonmigratory ripples to remove bioavailable nitrogen from coastal ecosystems is lower than that of cohesive sediments. We conclude that while experimental measurements provide a good starting point for constraining key parameters, reactive transport models with realistic kinetic and transport parameters provide critical insight into biogeochemical processes in permeable sediment that are difficult to experimentally evaluate
机译:我们使用新颖的测量方法测量了密封水槽中渗透性沉积物中的反硝化作用,并在环境上具有代表性的流体流动和溶质传输行为。实施了代表水槽实验的数值流和反应输运模型,以提供对流体动力学和生物地球化学过程耦合的机理的见解。模型结果与实验数据之间存在广泛共识。该模型表明,与粘性沉积物中的硝化和反硝化之间的耦合相对较弱。这是由于缺氧孔隙水和上覆水柱之间的直接对流输送,以及大多数含氧对流区域和下面的缺氧区域之间几乎没有相互作用。因此,反硝化主要由水塔提供的硝酸盐推动。这表明具有非迁移性波纹的可渗透沉积物从沿海生态系统中去除生物可利用氮的能力低于粘性沉积物。我们得出的结论是,尽管实验测量为约束关键参数提供了一个很好的起点,但具有实际动力学和传输参数的反应性输运模型提供了对渗透性沉积物中生物地球化学过程的关键见识,而这些经验很难通过实验来评估

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