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Nutrients

机译:营养素

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摘要

Using the North Sea as a case scenario, a combined three-dimensional hydrodynamic-biogeochemical-pollutant model was applied for simulating the seasonal variability of the distribution of hydrophobic chemical pollutants in a marine water body. The model was designed in a nested framework including a hydrody-namic block (Hamburg Shelf Ocean Model (HAMSOM), a bio-geochemical block (Oxygen Depletion Model (OxyDep), and a pollutant-partitioning block (PolPar). Pollutants can be (1) transported via advection and turbulent diffusion, (2) get absorbed and released by a dynamic pool of paniculate and dissolved organic matter, and (3) get degraded. Our model results indicate that the seasonality of biogeochemical processes, including production, sinking, and decay, favors the development of hot spots with particular high pollutant concentrations in intermediate waters of biologically highly active regions and seasons, and it potentially increases the exposure of feeding fish to these pollutants. In winter, however, thermal convection homogenizes the water column and destroys the vertical stratification of the pollutant. A significant fraction of the previously exported pollutants is then returned to the water surface and becomes available for exchange with the atmosphere, potentially turning the ocean into a secondary source for pollutants. Moreover, we could show that desorption from aging organic material in the upper aphotic zone is expected to retard pollutants transfer and burial into sediments; thus, it is considerably limiting the effectiveness of the biological pump for pollutant exports.
机译:使用北海作为案例场景,应用了一种组合的三维流体动力学 - 生物地球化学 - 污染物模型,用于模拟海洋水体中疏水化学污染物分布的季节变异性。该模型设计在嵌套框架中,包括水性 - 纳米块(汉堡货架海洋模型(Hamsom),生物地球化学块(氧气耗尽模型(氧化氧化物)和污染物分区块(Polpar)。污染物可以是( 1)通过平流和湍流扩散运输,(2)通过动态的群体池(2)被动态的癌症和溶解的有机物质吸收和释放,并且(3)变得降级。我们的模型结果表明生物地球化学过程的季节性,包括生产,下沉,和衰变,有利于在生物高度活跃区域和季节的中间水域中具有特殊高污染物浓度的热点的发展,并且可能会增加喂养鱼对这些污染物的暴露。然而,在冬季,热对流均匀化水柱和水柱均匀化摧毁污染物的垂直分层。然后将先前出口的污染物的显着分数恢复到水面并成为Avai合适的与大气交换,可能将海洋转变为污染物的二级来源。此外,我们可以表明,预期上部化区中老化有机材料的解吸预计将延缓污染物转移和埋葬成沉积物;因此,它大大限制了生物泵对污染物出口的有效性。

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    《Oceanographic Literature Review》 |2020年第4期|974-976|共3页
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