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Long-term changes in Wadden Sea nutrient cycles: importance of organic matter import from the North Sea

机译:瓦登海养分循环的长期变化:从北海进口有机物的重要性

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The Wadden Sea is a shallow tidal area along the North Sea coast of The Netherlands, Germany and Denmark. The area is strongly influenced by rivers, the most important of which are the rivers Rhine, Meuse and Elbe. Due to the increased nutrient load into the coastal zone the primary production in the Wadden Sea almost tripled during the past few decades. A conceptual model is presented that links nitrogen input (mainly nitrate) via Rhine and Meuse with the annual nitrogen cycle within the Wadden Sea. Three essential steps in the model are: (1) nitrogen limits the primary production in the coastal zone, (2) a proportional part of the primary produced organic matter is transported into the Wadden Sea and (3) the imported organic matter is remineralized within the Wadden Sea and supports the local productivity by nitrogen turn-over. The conceptual model predicts that during years with a high nutrient load more organic matter is produced in the coastal zone and more organic matter is transported into and remineralized within the Wadden Sea than during years with low nutrient loads. As a proxy for the remineralisation intensity ammonium plus nitrite concentrations in autumn were used. Based on monitoring data from the Dutch Wadden Sea (1977-1997) the above mentioned model was statistically tested. In autumn, however, a significant correlation was found between autumn values of ammonium and nitrite and river input of nitrogen during the previous winter, spring and summer. The analysis supports that in years with a high riverine nitrogen load more organic matter is remineralized within the Wadden Sea than in years with a low nitrogen load. A comparison with older data from 1960 to 1961 suggests that the remineralisation intensity in the Wadden Sea has increased by a factor of two to three. This is not reflected by a two to three-fold increase in riverine nitrogen load from 1960 to present. It is suggested that the increased remineralisation rates in the Dutch Wadden Sea between the 1960s and the 1980s/1990s are largely caused by an increased nitrogen flux through the Channel and the Strait of Dover and by an increased atmospheric nitrogen input.
机译:Wadden Sea是沿着荷兰,德国和丹麦北海海岸的浅潮汐区域。该地区受到河流的强烈影响,其中最重要的是河流,梅苏和易乐器。由于养分负荷增加进入沿海地区,瓦登海的主要生产在过去几十年中几乎增加了两倍。提出了一种概念模型,将氮素输入(主要是硝酸盐)与莱茵河内的年氮循环联系起来。模型中的三个基本步骤是:(1)氮气限制沿海区的主要生产,(2)将部分生产的有机物质的比例部分运输到瓦登海和(3)进口有机物内部再归化Wadden海,支持氮气翻转的局部生产力。概念模型预测,在高营养负荷的年份中,在沿海地区产生更多有机物质,并且在营养量低于营养量的多年内,在瓦登海内运输更多有机物并再归化。作为秋季再矿化强度加上亚硝酸盐浓度的代理。基于来自荷兰瓦登海(1977-1997)的监测数据(1977-1997)上述模型在统计上进行了统计测试。然而,在秋季,在前冬季,春季和夏季,秋季的铵和亚硝酸盐和亚硝酸盐和河流输入之间的显着相关性。分析支持,多年来在河流氮气荷载中,在瓦登海内比多年重新归化,而不是低氮负荷。与1960年至1961年的较旧数据的比较表明,瓦登海中的倒立强度增加了两到三倍。这不是从1960年从1960年的河流氮负载增加两到三倍的增加。建议,20世纪60年代与20世纪80年代/ 1990年代之间的荷兰瓦登海中荷兰·瓦登海之间的重复化率增加主要是由通道的增加和多佛海峡的氮气通量和增加的大气氮气输入引起。

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