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An advanced tool for eutrophication modeling in coastal lagoons: Application to the Victoria lagoon in the north of Spain

机译:沿海泻湖富营养化建模的高级工具:在西班牙北部的维多利亚泻湖中的应用

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摘要

A mathematical eutrophication model, EnvHydrEM (Environmental Hydraulics Institute Eutrophication Model), was developed to be applied specifically to coastal lagoons. This model takes into consideration 19 state variables, including phytoplankton, carbon (total inorganic carbon and sediment carbon), phosphorus (organic phosphorus and phosphate), nitrogen (organic nitrogen, ammonia and nitrate), silica (available dissolved and particulate biogenic silica), dissolved oxygen, carbonaceous organic matter, zooplankton, bacterioplankton, detritus, iron (total and ferrous iron) and manganese (total manganese and manganous ion). EnvHydrEM also describes all possible interactions between the considered variables, showing biological and physicochemical processes that can occur in this type of aquatic systems. These are usually characterized by a series of peculiar aspects which result mainly from the complex interaction between inland and marine waters, as well as from a low hydrodynamic renewal rate. To provide an example, the EnvHydrEM model was applied to the study of the eutrophication process in the Victoria lagoon, in northern Spain. In this case study, the proposed model has proved its ability to reproduce the chlorophyll-a concentration trends in the water body. The study also concluded that the Victoria lagoon is a mesotrophic aquatic media in which silica is the most critical factor for the analysis of its eutrophication state, due mainly to the presence of diatoms.
机译:开发了数学富营养化模型EnvHydrEM(环境水力学研究所富营养化模型),专门用于沿海泻湖。该模型考虑了19个状态变量,包括浮游植物,碳(无机碳和沉积碳总量),磷(有机磷和磷酸盐),氮(有机氮,氨和硝酸盐),二氧化硅(可利用的溶解性和颗粒状生物二氧化硅),溶解氧,碳质有机物,浮游动物,浮游细菌,碎屑,铁(全部和二价铁)和锰(全部锰和锰离子)。 EnvHydrEM还描述了所考虑变量之间的所有可能的相互作用,显示了在这种类型的水生系统中可能发生的生物学和物理化学过程。这些通常具有一系列独特的特征,这主要是由于内陆和海水之间复杂的相互作用以及较低的水动力更新率造成的。举个例子,EnvHydrEM模型被用于研究西班牙北部维多利亚泻湖的富营养化过程。在本案例研究中,所提出的模型证明了其能够再现水体中叶绿素a浓度趋势的能力。研究还得出结论,维多利亚泻湖是一种中营养水生介质,其中二氧化硅是分析其富营养化状态的最关键因素,主要是由于硅藻的存在。

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