首页> 外文OA文献 >Pore-water advection and solute fluxes in permeable marine sediments (I): Calibration and performance of the novel benthic chamber systemSandy
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Pore-water advection and solute fluxes in permeable marine sediments (I): Calibration and performance of the novel benthic chamber systemSandy

机译:渗透性海洋沉积物中的孔隙水平流和溶质通量(I):新型底栖舱系统的校准和性能桑迪

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摘要

This contribution introduces the benthic chamber system Sandy that was developed for studying in situ solute fluxes in permeable sandy sediments where advective pore-water transport can dominate solute exchange across the sediment-water interface. The Sandy system can be deployed at the seafloor, where it autonomously performs measurements of sediment-water solute fluxes. The innovative features include an insertion mechanism that permits gentle and deep penetration of the chamber into hard consolidated sands with minimum disturbance, and an adjustable stirrer that generates a rotationally symmetric pressure gradient between the center and the circumference of the enclosed sediment surface. In contrast to similar systems, Sandy takes advective pore-water exchange into account. Through adjustment of the stirring rate, defined pressure gradients can be established that are similar in shape and magnitude to natural pressure gradients that develop at topographical structures of current-exposed sediment surfaces. Solute fluxes measured in the chamber at a specific “advective” stirrer setting can be compared with those obtained at reduced stirring, where pressure gradients are absent and solute exchange therefore is restricted to diffusion and bioirrigation. Rates of pore-water exchange that were determined by means of tracer experiments at different stirrer settings in natural coarse-grained North Sea deposits demonstrate the feasibility of this approach. This permits, for the first time, an evaluation of the contribution of advective exchange to the total interfacial solute flux in situ and makes Sandy a valuable tool to study advection-related processes in permeable shelf sediments.
机译:这一贡献引入了底栖室系统Sandy,该系统是为研究可渗透砂质沉积物中的原位溶质通量而开发的,对流孔隙水运移可主导整个沉积物-水界面的溶质交换。 Sandy系统可以部署在海底,在那里可以自动执行沉积物-水溶质通量的测量。创新的功能包括:插入机制,可在最小干扰的情况下使腔室缓慢而深入地渗透到硬质固结砂中;可调式搅拌器,可在封闭的沉积物表面的中心和圆周之间产生旋转对称的压力梯度。与类似的系统相比,桑迪考虑了对流孔隙水交换。通过调节搅拌速率,可以建立定义的压力梯度,该压力梯度的形状和大小与在当前暴露的沉积物表面的地形结构处形成的自然压力梯度相似。可以将在特定“平流”搅拌器设置下在室内测量的溶质通量与在减少搅拌下获得的溶质通量进行比较,在这种情况下,压力梯度不存在,因此溶质交换仅限于扩散和生物灌溉。通过示踪剂实验在北海天然粗粒矿床中不同搅拌器设置下确定的孔隙水交换速率证明了该方法的可行性。这首次允许评估对流交换对原位总界面溶质通量的贡献,并使桑迪成为研究可渗透层架沉积物中与对流有关的过程的有价值的工具。

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