沿海水域的营养积累和营养保留——Darss - Zingst Bodden链30年的调查

U. Selig, H. Baudler, Mathias Krech, Günther Nausch
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引用次数: 17

摘要

沿海水域是咸水和海洋系统之间的过渡地带。近50年来,这些水体受到的人为影响较大,营养水平发生了快速变化。在达斯-津斯特-博登海链(波罗的海南部-梅克伦堡-西波美拉尼亚,德国),通过对化学、水文和生物参数的长期监测,可以以每日分辨率重建近30年来营养状态的变化。直到20世纪80年代,已有资料表明汇水区的人为营养物负荷增加。然而,随着HELCOM建议的实施,磷和氮的投入在1990年代减少了。与养分投入的减少相反,没有观察到养分浓度和初级产量的减少。其原因是内部养分负荷高,养分从沉积物中释放出来。许多研究项目允许对这些过程进行描述和量化。今天,内部磷池超过外部磷负荷数倍。这些结果为制定沿海水域恢复策略提供了科学依据。制定合适的管理计划是实施欧盟水框架指令的必要条件,以确保到2015年达到良好的生态状态。罗斯托克大学生物站在津斯特的当地实地研究条件使监测数据的长期获取和大量互补的具体研究项目成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nutrient accumulation and nutrient retention in coastal waters – 30 years investigation in the Darss‐Zingst Bodden chain
Coastal waters are transitional zones between limnic waters and marine systems. The anthropogenic impact on these water bodies is high and a rapid change of trophic level was observed within the last 50 years. In the Darss-Zingst Bodden chain (southern Baltic Sea - Mecklenburg-West Pomerania, Germany), the change in trophic state during the last thirty years can be reconstructed by long-term monitoring of chemical, hydrographical and biological parameters with an up to daily resolution. Until the 1980s, increased input of the anthropogenic nutrient load from the catchment area has been documented. However, with the implementation of the HELCOM recommendations the input of phosphorus and nitrogen was reduced in the 1990s. In contrast to the reduction of nutrient inputs, a decrease in nutrient concentrations and primary production could not be observed. The reasons are a high internal nutrient load and the release of nutrients out of the sediments. Numerous research projects allowed the description and quantification of these processes. Today, the internal phosphorus pool exceeds the external phosphorus load several fold. These results are the scientific basis for the development of restoration strategies of coastal waters. The development of suitable management plans is necessary for the implementation of the EU Water Framework Directive to guarantee a good ecological state by 2015. The long time acquisition of monitoring data and voluminous complementary specific research projects was enabled by the local field research conditions of the Biological Station of the University of Rostock in Zingst.
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