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The effects of hydraulic works and wetlands function in the Salado-River basin (Buenos Aires, Argentina)

机译:萨拉多河流域(阿根廷布宜诺斯艾利斯)的水力工程和湿地功能的影响

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Man-made activities exert great influences on fluvial ecosystems. with lowland rivers being substantially modified through agricultural land use and populations. The recent construction of drainage canals in the upper stretch of the Salado-River basin caused the mobilization of huge amounts of salts formerly stored in the groundwater. The main aim of this work was to analyze the effect of the discharges of those canals into the Salado-River water, under different hydrologic conditions , and the role of the wetlands and shallow lakes placed along the canals' system. Physicochemical variables were measured and water samples were taken during times of high water, mean flows, drought. and extreme drought. The environmental variables and the plankton development were related to the hydrologic regime and reached minimum values during floods because of low temperatures and dilution. Local effects on the water's ionic composition became pronounced during droughts because of groundwater input. Nutrient concentrations were mainly associated with point waste-water discharges. Conductivity, ion concentrations, total plankton biomass, and species richness increased in the Salado-River downstream site, after the canals' discharges. The artificial-drainage system definitely promotes the incorporation of salts into the Salado-River basin. In this scenario, a careful hydraulic management is needed to take into account this issue of secondary salinization that threatens the economic exploitation of the region. The wetlands present in this study acted as service environments not only helping to reduce salt, nutrient, and suspended-solid concentrations downstream but also contributing a plethora of species and plankton biomass into the Salado-River main course.
机译:人为活动对河流生态系统产生巨大影响。低地河流通过农业土地利用和人口得到了重大改变。最近在萨拉多河盆地上段建造了排水渠,从而动员了以前储存在地下水中的大量盐分。这项工作的主要目的是分析在不同水文条件下这些运河向萨拉多河水排放的影响,以及沿运河系统放置的湿地和浅湖的作用。在高水,平均流量,干旱期间测量理化变量并采集水样。和极端干旱。环境变量和浮游生物的发育与水文状况有关,并且由于低温和稀释而在洪水期间达到最小值。在干旱期间,由于地下水的输入,对水离子组成的局部影响变得明显。营养物浓度主要与点废水排放有关。运河排放后,萨拉多河下游站点的电导率,离子浓度,总浮游生物量和物种丰富度增加。人工排水系统无疑会促进盐向萨拉多河盆地的整合。在这种情况下,需要进行仔细的水力管理,以考虑到威胁该地区经济开发的二次盐化问题。本研究中存在的湿地不仅充当了服务环境,不仅有助于减少下游的盐分,养分和悬浮固体浓度,而且还为萨拉多河主干道贡献了众多物种和浮游生物。

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