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Vertical heterogeneities of cyanobacteria and microcystin concentrations in lakes using a seasonal In situ monitoring station

机译:使用季节性原位监测站的湖泊中蓝细菌和微囊藻毒素浓度的垂直异质性

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A high frequency, high resolution, seasonal research station was deployed to quantify a wide range of local meteorological conditions, water temperature, and water chemistry, including phycocyanin, in two different eutrophic stratified Minnesota lakes. The monitoring effort was coupled with discrete weekly sampling measuring nutrients, cyanobacteria composition, and microcystin concentrations. Our objective was to describe the vertical and seasonal distributions of cyanobacteria biovolume (BV) and microcystin concentrations (MC) using physical lake variables. Two types of BV distributions were observed above the thermocline upward in the water column. The first distribution depicted BV uniformly distributed over the diurnal surface layer (hsubSL/sub), and the second BV distribution displayed local BV maxima. A quantitative relationship was developed to determine the anticipation of observing a uniform distribution as a function of the surface layer Reynolds number (ResubSL/sub), the dimensionless ratio of inertial to viscous forces. The uniform distribution was observed systematically for ResubSL/sub??50,000. MC was observed to accumulate above the thermocline and have a vertical distribution similar to BV, thus depending on ResubSL/sub. This is important for directing sampling efforts, because it narrows the range of BV and MC heterogeneity above the thermocline, and suggests a vertical sampling protocol to detect potential maxima and compute representative depth-average concentrations. We explored the temporal variability of the MC to BV ratio, spatially averaged in the epilimnion (MCsubep/sub/BVsubep/sub). The maximum MCsubep/sub/BVsubep/sub occurred before the maximum BVsubep/sub and specifically, during the onset of significant biomass growth in both lakes. This observation is notable because the maximum MCsubep/sub occurs before the visual signs of enhanced cyanobacterial accrual are less recognizable to the public and to monitoring efforts. Our findings could have important implications for predicting MC distribution and guiding monitoring strategies for quantifying MC concentrations in small stratified lakes.
机译:在两个不同的富营养化分层明尼苏达州湖泊中,部署了一个高频率,高分辨率的季节性研究站来量化各种当地的气象条件,水温和水化学,包括藻蓝蛋白。监测工作与每周一次的不连续采样一起测量营养素,蓝细菌组成和微囊藻毒素浓度。我们的目标是使用物理湖泊变量描述蓝细菌生物量(BV)和微囊藻毒素浓度(MC)的垂直和季节性分布。在水柱中,在跃层上方上方观察到两种BV分布。第一个BV分布在昼夜表层(h SL )上均匀分布BV,第二个BV分布显示局部BV最大值。建立了定量关系,以确定观察到均匀分布与表层雷诺数(Re SL ),惯性力与粘性力的无量纲比的函数的关系。系统地观察到Re SL →> 50,000的均匀分布。观察到MC聚集在温跃层上方,并且具有类似于BV的垂直分布,因此取决于Re SL 。这对指导采样工作很重要,因为它缩小了BMC和MC异物跃迁的范围,并建议使用垂直采样协议来检测潜在的最大值并计算代表性的深度平均浓度。我们探索了MC与BV之比的时间变异性,在上斜线(MC ep / BV ep )中进行了空间平均。最大MC ep / BV ep 发生在最大BV ep 之前,特别是在两个湖泊中生物量显着增长的开始期间。这种观察是值得注意的,因为最大的MC ep 发生在公众和监测工作难以为人所知的增强的蓝细菌应计性的视觉迹象之前。我们的发现可能对预测MC分布和指导监测策略以量化小型分层湖泊中MC浓度具有重要意义。

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