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Management Options and Effects on a Marine Ecosystem: Assessing the Future of the Baltic

机译:管理方案及其对海洋生态系统的影响:评估波罗的海的未来

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We are using the coupled models in a decision support system, Nest, to evaluate the response of the marine ecosystem to changes in external loads through various management options. The models address all the seven major marine basins and the entire drainage basin of the Baltic Sea. A series of future scenarios have been developed, in close collaboration with the Helsinki Commission, to see the possible effects of improved waste-water treatment and manure handling, phosphorus-free detergents, and less intensive land use and live stocks. Improved wastewater treatment and the use of phosphorus-free detergents in the entire region would drastically decrease phosphorus loads and improve the marine environment, particularly the occurrence of cyanobacterial blooms. However, the Baltic Sea will remain eutrophic, and to reduce other effects, a substantial reduction of nitrogen emissions must be implemented. This can only be obtained in these scenarios by drastically changing land use. In a final scenario, we have turned 50 percent of all agricultural lands into grasslands, together with efficient wastewater treatments and a ban of phosphorus in detergents. This scenario will substantially reduce primary production and the extension of hypoxic bottoms, increase water transparency in the most eutrophied basins, and virtually eliminate extensive cyanobacterial blooms.
机译:我们正在决策支持系统Nest中使用耦合模型,以通过各种管理选项评估海洋生态系统对外部负载变化的响应。这些模型适用于波罗的海的所有七个主要海盆和整个流域。在与赫尔辛基委员会的密切合作下,已开发出一系列未来方案,以观察改进废水处理和粪便处理,无磷清洁剂以及土地和牲畜集约化程度降低的可能效果。改善废水处理和在整个地区使用无磷清洁剂将大大减少磷负荷并改善海洋环境,特别是蓝藻水华的发生。但是,波罗的海将保持富营养化,为了减少其他影响,必须实现氮排放量的大幅减少。只有在这些情况下,才能通过大幅度改变土地用途来实现这一目标。最终,我们将所有农业用地的50%变成了草原,并进行了有效的废水处理和禁止使用洗涤剂中的磷。这种情况将大大减少初级产量和缺氧底部的扩展,增加大多数富营养化盆地的水透明度,并实际上消除大量的蓝藻水华。

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