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Nitrogen and the Baltic Sea: Managing Nitrogen in Relation to Phosphorus

机译:氮与波罗的海:管理与磷有关的氮

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摘要

The Baltic is a large, brackish sea (4 x 105 km2) extending from 54N to ~66N, with a fourfold larger drainage area (population 8 x 107). Surface salinity (2 to 8 PSU) and hence biodiversity is low. In the last century, annual nutrient loads increased to 10 metric tons N and 5 x10 ton P. Eutrophication is evident in the N-limited south, where cyanobacteria fix 2 to 4 x 10 ton N each summer, Secchi depths have been halved, and O2-deficient bottom areas have spread. Production remains low in the P-limited north. In nutrient-enriched coastal areas, phytoplankton blooms, toxic at times, and filamentous macroalgae reduce amenity values. Loads need to be reduced of both N, to reduce production, and P, to limit N-fixing cyanobacterial blooms. When large N-load reductions have been achieved locally, algal biomass has declined. So far, P loads have been reduced more than N loads. If this continues, a P-limited Baltic proper may result, very different from previous N-limited conditions. Reaching the management goal of halved anthropogenic N and P loads at minimum cost will require better understanding of biogeochemical nutrient cycles, economic evaluation of proposed measures, and improved stakeholder participation.
机译:波罗的海是一片咸淡的大海(4 x 105 km2),从54N延伸至〜66N,流域面积扩大了四倍(人口8 x 107)。表面盐度(2至8 PSU),因此生物多样性较低。在上个世纪,每年的养分负荷增加到10吨氮和5 x 10吨磷。富营养化在限氮的南部很明显,那里的蓝藻每年夏天固定2至4 x 10吨氮,塞奇深度减半,并且氧气不足的底部区域已经扩散。限磷地区北部的产量仍然较低。在营养丰富的沿海地区,浮游植物大量开花,有时有毒,而丝状大型藻类会降低其舒适性。需要减少N的负荷(以减少产量)和P的负荷,以限制固氮细菌繁殖。当局部减少大量氮负荷时,藻类生物量已经下降。到目前为止,P负载已比N负载减少了更多。如果继续这种情况,则可能会产生P极限波罗的海特性,这与以前的N极限条件大不相同。以最小的成本实现人为氮和磷减半的管理目标将需要对生物地球化学养分循环有更好的了解,对拟议措施进行经济评估,并提高利益相关者的参与度。

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