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Evaluation of internal loading and water level changes: implications for phosphorus, algal production, and nuisance blooms in Kabetogama Lake, Voyageurs National Park, Minnesota

机译:内部负荷和水位变化的评估:对明尼苏达州Voyageurs国家公园的Kabetogama湖中磷,藻类产生和讨厌的花朵的影响

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摘要

Hydrologic manipulations have the potential to exacerbate or remediate eutrophication in productive reservoirs. Dam operations at Kabetogama Lake, Minnesota, were modified in 2000 to restore a more natural water regime and improve water quality. The US Geological Survey and National Park Service evaluated nutrient, algae, and nuisance bloom data in relation to changes in Kabetogama Lake water levels. Comparison of the results of this study to previous studies indicates that chlorophyll a concentrations have decreased, whereas total phosphorus (TP) concentrations have not changed significantly since 2000. Water and sediment quality data were collected at Voyageurs National Park during 2008-2009 to assess internal phosphorus loading and determine whether loading is a factor affecting TP concentrations and algal productivity. Kabetogama Lake often was mixed vertically, except for occasional stratification measured in certain areas, including Lost Bay in the northeastern part of Kabetogama Lake. Stratification, higher bottom water and sediment nutrient concentrations than in other parts of the lake, and phosphorus release rates estimated from sediment core incubations indicated that Lost Bay is one of several areas that may be contributing to internal loading. Internal loading of TP is a concern because increased TP may cause excessive algal growth including potentially toxic cyanobacteria.
机译:水文操纵有可能加剧或补救生产油藏中的富营养化。明尼苏达州Kabetogama湖的大坝运营于2000年进行了修改,以恢复更为自然的水情并改善水质。美国地质调查局和国家公园管理局评估了与Kabetogama湖水位变化有关的养分,藻类和滋扰性开花数据。这项研究与以前的研究结果的比较表明,自2000年以来,叶绿素a的浓度降低了,而总磷(TP)的浓度却没有显着变化。水和沉积物质量数据是在Voyageurs国家公园于2008-2009年收集的,用于评估内部磷负荷,并确定负荷是否是影响总磷浓度和藻类生产力的因素。 Kabetogama湖经常是垂直混合的,除了在某些地区偶有分层现象外,包括Kabetogama湖东北部的失落湾。分层,底部水和沉积物养分浓度高于湖泊其他部分,以及沉积物核心孵化所估计的磷释放速率表明,失落湾是可能造成内部负荷的几个区域之一。 TP的内部负载是一个问题,因为TP升高可能会导致藻类过度生长,包括潜在的有毒蓝藻。

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