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Sensor-based detection of algal blooms for public health advisories and long-term monitoring

机译:基于传感器的公共卫生咨询和长期监控的藻类绽放的检测

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摘要

Throughout the United States, many eutrophic freshwater bodies experience seasonal blooms of toxic cyanobacteria. These blooms limit recreational uses and pose a threat to both human and ecological health. Traditional bi-weekly chlorophyll-based sampling programs designed to assess overall algal biomass fail to capture important bloom parameters such as bloom timing, duration, and peak intensity. In-situ optical and fluorometric measurements have the potential to fill this gap. However, relating in-situ measurements to relevant water quality measures (e.g. cyanobacterial cell density or chlorophyll concentration) is a challenge that limits the implementation of probe-based monitoring strategies. This study, of Aphanizomenon dominated blooms in Boston's Charles River, combines five years of cyanobacterial cell counts with high resolution insitu sensor measurements to relate turbidity and fluorometric readings to cyanobacterial cell density. Our work compares probe and lab-based estimates of summer-mean chlorophyll concentration and highlights the challenges of working with raw fluorescence in cyanobacteria dominated waterbodies. A strong correlation between turbidity and cyanobacterial cell density (R 2 = 0.84) is used to construct a simple cell-density-estimation-model suitable for triggering rapid bloom-responsesampling and classifying bloom events with a true positive rate of 95%. The approach described in this study is potentially applicable to many cyanobacteria dominated freshwater bodies.
机译:在整个美国,许多富营养的淡水机构都经历了季节性绽放的毒性蓝细菌。这些绽放限制了娱乐用途,对人类和生态健康构成威胁。旨在评估整体藻类生物量的基于叶绿素的基于叶绿素的采样程序未能捕获重要的盛开参数,如绽放定时,持续时间和峰值强度。原位光学和荧光测量有可能填补这种间隙。然而,与相关水质措施的原位测量有关(例如,Cyanobacterial细胞密度或叶绿素浓度)是限制基于探测的监测策略的实施的挑战。本研究在波士顿查尔斯河中占据了盛开的盛开,结合了五年的蓝藻细胞计数,具有高分辨率的Insitu传感器测量,以将浊度和荧光读数与蓝藻细胞密度相关联。我们的作品比较了夏季平均叶绿素浓度的探针和实验室的估计,并突出了在占据占据占据占据型水上的原始荧光的挑战。浊度和蓝藻细胞密度(R 2 = 0.84)之间的强烈相关性用于构建适合于触发快速盛开响应采样和分类盛开事件的简单的细胞密度估计模型,其真正的阳性率为95%。本研究中描述的方法可能适用于许多蓝藻占淡水体。

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