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Eutrophication and cyanobacteria in South Africa’s standing water bodies: A view from space

机译:南非站立水体的富营养化和蓝藻:从太空的看法

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摘要

Satellite remote sensing can make a significant contribution to monitoring water quality in South African standing water bodies. Eutrophication, defined as enrichment by nutrients, and toxin-producing cyanobacteria (blue-green algae) blooms pose a significant threat to the quality of South African surface water bodies. The status and trends of chlorophyll a (chl-a, a proxy for eutrophication), cyanobacterial blooms and cyanobacterial surface scum were determined for South Africa’s 50 largest water bodies between 2002 and 2012, using a recently developed algorithm and 10 years of data from the Medium Resolution Imaging Spectrometer (MERIS) satellite. The majority (62%) of the 50 water bodies were highly nutrient enriched or hypertrophic, while 26 had cyanobacterial blooms which posed a high health risk from surface scums. This study is the first of its kind to provide quantitative water quality information for South Africa’s water bodies from a time series of satellite remotely sensed data. We demonstrate the pivotal role that satellite remote sensing can play in greatly supplementing in-situ monitoring efforts such as the National Eutrophication Monitoring Programme. The finding that many water supply bodies are severely impacted by eutrophication and cyanobacterial blooms confirms that these remain issues of critical concern for water security and supply in South Africa.
机译:卫星遥感可以对监测南非站立水体的水质作出重大贡献。富营养化,定义为营养素的富集,产生毒素的蓝藻(蓝绿藻)绽放对南非地表水体的质量构成了重大威胁。叶绿素A(CHL-A,富营养化的代理),蓝藻绽放和蓝藻表面浮渣的状态和趋势是针对南非的50岁的50个最大的2002和2012年的水体,使用最近发达的算法和10年的数据中型分辨率成像光谱仪(Meris)卫星。 50个水体中的大多数(62%)是高度营养的富集或肥厚,而26种含有蓝藻绽放,从表面浮渣带来了高健康风险。本研究首先,为南非水体的定量水质信息从一系列卫星传感的数据提供了一系列的卫星。我们展示了卫星遥感可以在大大补充原位监测诸如国家富营养化监测计划等方面发挥的关键角色。许多供水机构受到富营养化和蓝藻盛开的严重影响的发现证实,这些仍然是南非水安全和供应的关键问题。

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