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Extreme flood impact on estuarine and coastal biogeochemistry: the 2013 Elbe flood

机译:极端洪水对河口和沿海生物地球化学的影响:2013年易北河洪水

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摘要

Within the context of the predicted and observed increase in droughts and floods with climate change, large summer floods are likely to become more frequent. These extreme events can alter typical biogeochemical patterns in coastal systems. The extreme Elbe River flood in June?2013 not only caused major damages in several European countries but also generated large-scale biogeochemical changes in the Elbe estuary and the adjacent German Bight. The high-frequency monitoring network within the Coastal Observing System for Northern and Arctic Seas (COSYNA) captured the flood influence on the German Bight. Data from a FerryBox station in the Elbe estuary (Cuxhaven) and from a FerryBox platform aboard the M/V iFunny Girl/i ferry (traveling between Büsum and Helgoland) documented the salinity changes in the German Bight, which persisted for about 2?months after the peak discharge. The Elbe flood generated a large influx of nutrients and dissolved and particulate organic carbon on the coast. These conditions subsequently led to the onset of a phytoplankton bloom, observed by dissolved oxygen supersaturation, and higher than usual pH in surface coastal waters. The prolonged stratification also led to widespread bottom water dissolved oxygen depletion, unusual for the southeastern German Bight in the summer.
机译:在预计和观察到的干旱和洪水伴随气候变化的增加的背景下,夏季大洪水可能会变得更加频繁。这些极端事件可以改变沿海系统中典型的生物地球化学模式。 2013年6月的易北河特大洪水不仅在几个欧洲国家造成了严重破坏,而且在易北河口和邻近的德国海岸线上产生了大规模的生物地球化学变化。北部和北冰洋沿海观测系统(COSYNA)内的高频监测网络捕获了洪水对德国湾的影响。来自易北河河口(库克斯港)的FerryBox站和M / V Funny Girl 轮渡(在Büsum和Helgoland之间旅行)上的FerryBox平台的数据记录了德国海岸线的盐度变化,该变化持续存在高峰放电后约2个月。易北河洪水在海岸上大量涌入了养分以及溶解的和颗粒状的有机碳。这些条件随后导致了浮游植物的爆发,这是通过溶解氧过饱和所观察到的,并且比沿海地表水域的pH值更高。长时间的分层还导致广泛的底部水溶解氧耗竭,这在夏天在德国东南部的东南沿海地区是不常见的。

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