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Remote sensing as a tool for monitoring water quality parameters for Mediterranean Lakes of European Union water framework directive (WFD) and as a system of surveillance of cyanobacterial harmful algae blooms (SCyanoHABs)

机译:遥感是监测欧盟水框架指令(WFD)地中海湖泊水质参数的工具,也是监测蓝藻有害藻华(SCyanoHAB)的系统

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摘要

Remote sensing has been used from the 1980s to study inland water quality. However, it was not until the beginning of the twenty-first century that CHRIS (an experimental multi-angle sensor with good spectral and spatial resolutions) and MERIS (with good temporal and spectral resolutions) started to acquire imagery with very good resolutions, which allowed to develop a reli able imagery acquisition system so as to consider remote sensing as an inland water management tool. This paper presents the methodology devel oped, from the field data acquisition with which to build a freshwater spectral library and the study of different atmospheric correction systems for CHRIS mode 2 and MERIS images, to the devel opment of algorithms to determine chlorophyll-a and phycocyanin concentrations and bloom sites. All these algorithms allow determining water eu-trophic and ecological states, apart from generat ing surveillance maps of toxic cyanobacteria with the main objective of Assessment of the Water Quality as it was used for Monitoring Ecological Water Quality in smallest Mediterranean Reser voirs integrated in the Intercalibration Exercise of European Union Water Framework Directive (WFD). We keep on using it to monitor the Ecological Quality Ratio (EQR) in Spain inland water.
机译:自1980年代以来,遥感一直用于研究内陆水质。但是,直到二十世纪初,CHRIS(具有良好光谱和空间分辨率的实验性多角度传感器)和MERIS(具有良好的时间和光谱分辨率)才开始获得具有非常高分辨率的图像,允许开发可靠的图像采集系统,以便将遥感视为内陆水管理工具。本文介绍了开发的方法,从用于建立淡水光谱库的现场数据采集以及针对CHRIS模式2和MERIS图像的不同大气校正系统的研究,到确定叶绿素a和藻蓝蛋白的算法的开发集中和开花地点。除了生成有毒蓝细菌的监测图外,所有这些算法都可以确定水的富营养状态和生态状态,其主要目的是评估水质,因为它被用于监测相互校准中集成的最小地中海水域中的生态水质。行使欧盟水框架指令(WFD)。我们继续使用它来监控西班牙内陆水域的生态质量比(EQR)。

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