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Ecosystem regime change inferred from the distribution of trace metals in Lake Erie sediments

机译:从伊利湖沉积物中微量金属的分布推断生态系统状况的变化

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摘要

Many freshwater and coastal marine ecosystems across the world may have undergone an ecosystem regime change due to a combination of rising anthropogenic disturbances and regional climate change. Such a change in aquatic ecosystems is commonly seen as shifts in algal species. But considerably less detail is known about the eutrophication history in terms of changes in algal productivity, particularly for a large lake with a great deal of spatial variability. Here we present an analysis of trace metals (Cu, Ni, Cd, and Pb) on a sediment core recovered from Lake Erie, off the Vermilion coast of northern Ohio, USA, to reconstruct the eutrophication history of the lake over the past 210 years. Following a slow eutrophication during European settlement, Lake Erie experienced a period of accelerated eutrophication, leading to an ecosystem regime transition into a eutrophic lake state in 1950. Our results suggested that the lake's biological productivity has ever since maintained fairly high even though a significant input reduction was realized from rigorous nutrient abatements that began as early as in 1969. This work underscored the role of in-lake biogeochemical cycling in nutrient dynamics of this already eutrophic lake.
机译:由于越来越多的人为干扰和区域气候变化的共同作用,世界上许多淡水和沿海海洋生态系统可能都经历了生态系统的变化。水生生态系统的这种变化通常被视为藻类物种的转移。但是就藻类生产力的变化而言,关于富营养化历史的信息知之甚少,特别是对于具有很大空间变异性的大型湖泊而言。在这里,我们对从美国俄亥俄州北部朱红海岸附近的伊利湖回收的沉积岩芯中的痕量金属(铜,镍,镉和铅)进行了分析,以重建过去210年的湖泊富营养化历史。 。在欧洲定居过程中出现了富营养化缓慢之后,伊利湖经历了加速富营养化的时期,导致在1950年生态系统向富营养化湖泊状态的过渡。早在1969年就开始进行严格的养分削减,从而实现了减少氮肥的工作。这项工作强调了湖内生物地球化学循环在该富营养化湖泊养分动态中的作用。

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