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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >CouplingWater Column and Sediment Biogeochemical Dynamics:Modeling Internal Phosphorus Loading, Climate Change Responses, and Mitigation Measures in Lake Vansj?, Norway
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CouplingWater Column and Sediment Biogeochemical Dynamics:Modeling Internal Phosphorus Loading, Climate Change Responses, and Mitigation Measures in Lake Vansj?, Norway

机译:偶联水柱和沉积物生物地球化学动力学:建模内部磷荷载,气候变化应对和威尔韦湖的缓解措施

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摘要

We expanded the existing one-dimensional MyLake model by incorporating a vertically resolved sediment diagenesis module and developing a reaction network that seamlessly couples the water column and sediment biogeochemistry. The application of the MyLake-Sediment model to boreal Lake Vansj? illustrates the model's ability to reproduce daily water quality variables and predict sediment-water column exchange fluxes over a long historical period. In prognostic scenarios, we assessed the importance of sediment processes and the effects of various climatic and anthropogenic drivers on the lake's biogeochemistry and phytoplankton dynamics. First, MyLake-Sediment was used to simulate the potential impacts of increasing air temperature on algal growth and water quality. Second, the key role of ice cover in controlling water column mixing and biogeochemical cycles was analyzed in a series of scenarios that included a fully ice-free end-member. Third, in another end-member scenario P loading from the watershed to the lake was abruptly halted. The model results suggest that remobilization of legacy P stored in the bottom sediments could sustain the lake's primary productivity on a time scale of several centuries. Finally, while the majority of management practices to reduce excessive algal growth in lakes focus on reducing external P loads, other efforts rely on the addition of reactive materials that sequester P in the sediment. Therefore, we investigated the effectiveness of ferric iron additions in decreasing the dissolved phosphate efflux from the sediment and, consequently, limit phytoplankton growth in Lake Vansj?.
机译:我们通过掺入垂直分辨的沉积物成岩作用模块并开发一种无缝耦合水柱和沉积物生物地球化学的反应网络来扩展现有的一维Mylake模型。 Mylake-Sard Model模型在Boreal Lake Vansj的应用吗?说明了模型再现日常水质变量的能力,并在长期历史时期预测沉积水柱交换通量。在预后情景中,我们评估了沉积物过程的重要性以及各种气候和人为司机对湖泊生物地球化学和浮游植物动力学的影响。首先,Mylake沉积物用于模拟增加空气温度对藻类生长和水质的潜在影响。其次,在包括完全无冰的端部构件的一系列场景中分析了冰盖在控制水柱混合和生物地球化学循环中的关键作用。第三,在另一个终端成员情景下,从流域加工到湖中突然停止。模型结果表明,储存在底部沉积物中的传统P的重新化可以在几个世纪的时间等级上维持湖泊的主要生产力。最后,虽然大多数管理措施来减少湖泊的过度藻类生长,但在降低外部P负荷的情况下,其他努力依赖于加入沉积物中沉积物的活性材料。因此,我们调查了亚铁湖泊中溶解磷酸盐的溶解磷酸盐的有效性,从而限制了瓦森湖中的浮游植物生长。

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