首页> 外文期刊>Turkish Journal of Fisheries & Aquatic Sciences >Monitoring Eutrophication Trends in Bolgoda North Lake, Sri Lanka by Satellite Remote Sensing
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Monitoring Eutrophication Trends in Bolgoda North Lake, Sri Lanka by Satellite Remote Sensing

机译:卫星遥感监测斯里兰卡博格达北湖的富营养化趋势

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This study was aimed to determine the present level and past trends of eutrophication of the Bolgoda North lake, Sri Lanka using in situ Chlorophyll-a (Chl-a) measurements and remote sensing data obtained from Advanced Space-borne Thermal Emission and Reflectance Radiometer (ASTER) satellite data. From March to October 2013, Chl-a, nitrate and phosphate contents of the lake were measured once a month on the days of ASTER overpass and using standard laboratory methods. Cloud-free ASTER images of the lake for the 2000-2013 period were atmospherically corrected using Fast Line-ofsight Atmospheric Analysis of Hypercubes (FLAASH) and in-situ Chl-a data were regressed with atmospherically corrected three ASTER Visible and Near Infrared band ratios of the same date. The green/red band ratio, which had the highest coefficient of determination, was used to develop algorithm for generation of 15-m resolution Chl-a distribution maps. Results indicated that eutrophication of this lake has increased from 2008 to 2011. Heavy eutrophic conditions were noted in several regions of the lake in 2013, especially in water stagnant areas and adjacent to freshwater inlets. Unplanned urbanization and inadequate facilities for waste management have resulted in heavy eutrophication of the water body. If the present trends of waste disposal and unplanned urbanization continue, enormous environmental problems would be resulted in future.
机译:这项研究的目的是使用原位叶绿素a(Chl-a)测量结果和从先进的星载热发射和反射辐射计(RS)获得的遥感数据来确定斯里兰卡Bolgoda北湖的富营养化水平和过去的趋势。 ASTER)卫星数据。从2013年3月至10月,在ASTER立交之日每月使用标准实验室方法对湖泊的Chl-a,硝酸盐和磷酸盐含量进行一次测量。使用超立方快速视线大气分析(FLAASH)在大气中校正了2000-2013年湖泊的无云ASTER图像,并通过大气校正的三个ASTER可见光和近红外波段比率对原位Chl-a数据进行了回归同一日期。具有最高确定系数的绿色/红色谱带比率用于开发生成15-m分辨率Chl-a分布图的算法。结果表明,该湖的富营养化状况从2008年到2011年有所增加。2013年,该湖的多个区域出现了严重的富营养化状况,特别是在停水地区和淡水进口附近。计划外的城市化和废物管理设施不足,导致水体富营养化。如果目前的废物处理趋势和计划外的城市化趋势继续下去,将来将导致巨大的环境问题。

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