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Monitoring urban storm water: facing climate changes in a Mediterranean coastal city

机译:监测城市风暴水:面对地中海沿海城市的气候变化

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In the actual global climate change scenario, Mediterranean cities are particularly vulnerable to floods and droughts, destabilizing the urban water cycle. During the intense precipitation events, more than in normal rainfall scenarios, the resulting diffuse pollution can be a major threat to the natural ecosystems and human health. Therefore, the characterization of the urban storm water runoff is considered of the utmost importance to the region, and was the main objective of this work. With this purpose, a monitoring plan for urban storm water of Faro (Portugal) was developed. Representative sampling locations, frequency of sampling and analytical parameters were defined. A major storm of the 2014-2015 wet season was monitored. The analytical parameters were TSS, BOD, COD, pH, Conductivity, TN, TP, Ni, Cd, Pb, Total Hydrocarbons and E. coli. Results showed that, mainly during the first 45 min of the precipitation event, some levels of pollutants (e.g. Pb), can be high enough to cause serial disturbances in the Ria Formosa ecosystem and thus in human health.
机译:在实际的全球气候变化情景中,地中海城市特别容易受到洪水和干旱的影响,稳定城市水循环。在激烈的降水事件中,超过正常的降雨场景,所产生的弥漫污染可能是对自然生态系统和人类健康的重大威胁。因此,城市风暴水径流的表征被认为是对该地区至关重要的,这是这项工作的主要目标。为此,开发了Faro(葡萄牙)的城市风暴水监测计划。定义了代表性采样位置,采样和分析参数的频率。监测了2014-2015雨季的一个重大风暴。分析参数是TSS,BOD,COD,pH,电导率,TN,TP,Ni,Cd,Pb,总烃和大肠杆菌。结果表明,主要在沉淀事件的前45分钟期间,一定程度的污染物(例如Pb),足以引起RIA Formosa生态系统中的连续紊乱,从而造成人类健康。

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