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Improving Inland Water Quality Monitoring through Remote Sensing Techniques

机译:通过遥感技术改善内陆水质监测

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摘要

Chlorophyll-a (chl-a) levels in lake water could indicate the presence of cyanobacteria, which can be a concern for public health due to their potential to produce toxins. Monitoring of chl-a has been an important practice in aquatic systems, especially in those used for human services, as they imply an increased risk of exposure. Remote sensing technology is being increasingly used to monitor water quality, although its application in cases of small urban lakes is limited by the spatial resolution of the sensors. Lake Thonotosassa, FL, USA, a 3.45-km2 suburban lake with several uses for the local population, is being monitored monthly by traditional methods. We developed an empirical bio-optical algorithm for the Moderate Resolution Imaging Spectroradiometer (MODIS) daily surface reflectance product to monitor daily chl-a. We applied the same algorithm to four different periods of the year using 11 years of water quality data. Normalized root mean squared errors were lower during the first (0.27) and second (0.34) trimester and increased during the third (0.54) and fourth (1.85) trimesters of the year. Overall results showed that Earth-observing technologies and, particularly, MODIS products can also be applied to improve environmental health management through water quality monitoring of small lakes.
机译:湖水中叶绿素-a(chl-a)的水平可能表明存在蓝细菌,由于蓝藻可能产生毒素,因此可能引起公众健康的关注。在水生系统中,尤其是在用于人类服务的水生系统中,对chl-a的监测已成为重要的实践,因为这暗示着暴露的风险增加。尽管遥感技术在小型城市湖泊中的应用受到传感器的空间分辨率的限制,但越来越多地用于监测水质。美国佛罗里达州的Thonotosassa湖是一个3.45平方公里的郊区湖泊,对当地居民有多种用途,目前正通过传统方法每月进行监测。我们为中分辨率成像光谱仪(MODIS)的每日表面反射率产品开发了一种经验生物光学算法,以监控每日的chl-a。我们使用11年的水质数据将相同的算法应用于一年中的四个不同时段。标准化的均方根误差在该月的前三个月(0.27)和第二个(0.34)较低,而在该年的第三三个月(0.54)和第四(1.85)期间有所增加。总体结果表明,通过小湖水质监测,地球观测技术,尤其是MODIS产品,还可用于改善环境健康管理。

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