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Water quality dynamic during rainfall episodes: integrated approach to assess diffuse pollution using automatic sampling

机译:降雨过程中的水质动态:使用自动取样评估弥漫性污染的综合方法

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Diffuse pollution caused by rainfall events potentially affects water quality in rivers and, therefore, must be investigated in order to improve water quality planning and management recovery strategies. For these, a quali-quantitative approach was used to monitor the water quality parameters in a river located in a semi-urban watershed area based upon automatic sampling. Thirteen water quality parameters were measured during five rainfall events. Events ranged from 2.3 to 56.8 mm and water peak flows from 3.3 to 4.5 m(3)/s. The pollutographs measured showed a standard pattern for total suspended solids (TSS). However, for the other chemical parameters, as total phosphorous (TP) and dissolved organic carbon (DOC), the dilution effects were more evident. It was possible to observe the rainfall influence mainly for physical parameters indicating a mass transport pattern for diffuse pollutants, which increased, for example, the amount of TSS in the river. Furthermore, hydrological characteristics were relevant considering the pollutant behavior. Antecedent dry periods, ranging from 1.3 days to 21.4 days, and critical time, from 2.0 to 10.4 h, are determinants to evaluate non-traditional water quality impacts in the river. In general, each rainfall episode has its own characteristics, which produces distinct mass contribution and temporal behavior, being challenging in making generalization. Therefore, the results indicate that diffuse pollution has to be considered to establish future decision-making strategies to water resources management.
机译:降雨事件引起的弥漫性污染可能会影响河流中的水质,因此必须调查,以提高水质规划和管理恢复策略。为此,基于自动取样,使用质量定量方法监测位于半城市流域区域的河流中的水质参数。在五种降雨事件期间测量了十三个水质参数。事件范围为2.3至56.8毫米,水峰流量从3.3到4.5米(3)/ s。测量的污染仪表显示了总悬浮固体(TSS)的标准图案。然而,对于其他化学参数,作为总磷(TP)和溶解有机碳(DOC),稀释效果更明显。可以观察到主要用于指示弥漫性污染物的质量传输模式的物理参数的降雨影响,这增加了例如河流中的TSS量。此外,考虑到污染物行为有关水文特征。前一种干燥期,范围从1.3天至21.4天,临界时间为2.0到10.4小时,是评估河流中非传统水质的影响的决定因素。通常,每次降雨集都具有自己的特点,产生了不同的大规模贡献和时间行为,在制定泛化方面具有挑战性。因此,结果表明,弥漫污染必须考虑建立对水资源管理的未来决策策略。

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