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Thresholds of terrestrial nutrient loading for the development of eutrophication episodes in a coastal embayment in the Aegean Sea

机译:在爱琴海沿岸隔离带中富营养化事件发展过程中陆地营养物负荷的阈值

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1 - Thresholds of terrestrial nutrient loading (inorganic N and P) for the development of eutrophication episodes were estimated in an enclosed embayment, the gulf of Kalloni, in the Aegean, Eastern Mediterranean. Terrestrial loading was quantified by a watershed runoff model taking into account land use, geomorphology, sewerage, industrial and animal farming by-products. The eutrophication episodes were assessed by an existing scale for the Aegean coastal waters based on chl a, whereas the necessary nutrient concentrations (N and P) for the development of such episodes were defined using a probabilistic procedure. Finally, for the linking between nutrient loading arriving at the gulf and the resulting nutrient enrichment of the marine ecosystem, three loading factors were applied, developed by Vollenweider for lake and marine ecosystems. The first assumes no exchange between the embayment and the open sea, whereas the two others take into account water renewal time. Only the threshold for inorganic nitrogen estimated by the first factor was exceeded in the study area during February after a strong rainfall event coinciding with a eutrophication episode observed in the interior of the gulf, implying that the waters of the gulf are rather confined and the receiving body operates as a lake. The degree of confinement was further examined by studying the temperature, salinity, and density distributions inside the gulf and across the channel connecting the gulf to the open sea. It was found that the incoming freshwater from the watershed during winter results to the formation of a dilute surface layer of low salinity and density, clearly isolated from the open sea. The nutrients from the river inputs are diluted into this isolated water mass and the eutrophication threshold for nitrogen is exceeded. Although phosphorus loading was also high during winter, the corresponding limits were never exceeded. The proposed methodology sets a quantitative relationship between terrestrial nutrient loading and the development of eutrophication episodes in coastal embayments, assuming that information on the physical setting of the system is available. These cause-and-effect relationships can be invaluable tools for managers and decision makers in the framework of Integrated Coastal Zone Management.
机译:1-在地中海东部爱琴海的一个封闭小道Kalloni海湾中,估计了发生富营养化事件的陆地养分负荷(无机N和P)的阈值。考虑到土地利用,地貌,污水,工业和畜牧业副产品,通过分水岭径流模型对陆地负荷进行了量化。通过基于chl a的爱琴海沿海水域现有规模对富营养化事件进行了评估,而使用概率程序确定了发生此类事件所必需的营养物浓度(N和P)。最后,为了将到达海湾的养分负荷与海洋生态系统的养分富集联系起来,Vollenweider开发了三个湖泊和海洋生态系统的负荷因子。第一个假设的是隔离区和公海之间没有交换,而其他两个则考虑了换水时间。在强烈的降雨事件与在海湾内部观察到的富营养化事件相吻合之后,2月期间仅在研究区域中超过了由第一个因子估算的无机氮阈值,这意味着海湾的水域相当狭窄,并且接收身体就像一个湖泊。通过研究海湾内部以及跨过连接海湾与公海的通道的温度,盐度和密度分布,进一步检查了封闭程度。已经发现,冬季从流域流入的淡水导致形成低盐度和低密度的稀薄表层,明显与公海隔离。来自河流输入的养分被稀释到这个孤立的水团中,并且超过了氮的富营养化阈值。尽管冬季的磷负荷也很高,但从未超过相应的限值。假设可以获取有关系统物理设置的信息,那么拟议的方法将在陆地养分负载与沿海沿岸富营养化事件发展之间建立定量关系。这些因果关系对于海岸带综合管理框架中的管理者和决策者而言,是宝贵的工具。

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