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Climatic seasonality and water quality in watersheds: a study case in Limoeiro River watershed in the western region of Sao Paulo State, Brazil

机译:流域中的气候季节性和水质:巴西圣保罗州西部柠檬河流域研究案例

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Applying the climatological water balance (WB) concept to describe the relationship between climatic seasonality and surface water quality according to different forms of land use and land cover (LULC) is an important issue, but little explored in the literature. In this paper, we evaluate the influence of WB on surface water quality and its impacts when interacting with LULC. We monitored 11 sampling points during the four seasons of the year, from which we estimate WQI (water quality index) and TSI (trophic state index). We found an effect of the seasonality factor on both WQI values (F(3,30) = 12.472; p < 0.01) and in TSI values (F(3,30) = 6.967; p < 0.01). We noticed that LULC interferes in the way that the water balance influences the WQI and TSI values since in sampling points closest to higher urban density, with little or no riparian protection, the correlation between water balance and water quality was lower. In the stations that had the lowest water surplus and deficit, there was positive linearity between water balance and WQI. However, in the seasons when the surplus and water deficit recorded were extreme, there was no linearity. We conclude that water deficiency impairs the quality of surface water. In the extreme surplus water season, the homogeneity of WQI samples was lower, suggesting a higher interaction between rainwater and LULC. This study contributes to design management strategies of water resources, considering the climatic seasonality for optimization.
机译:应用气候水平(WB)概念描述气候季节性和地表水质之间的关系,根据不同形式的土地使用和陆地覆盖(LULC)是一个重要的问题,但文献中探讨了很小。在本文中,我们评估了WB对Lulc交互时表面水质及其冲击的影响。我们在今年的四季监测了11个抽样点,从中估计了WQI(水质指数)和TSI(营养州指数)。我们发现季节性因素对WQI值(F(3,30)= 12.472; P <0.01)和TSI值(F(3,30)= 6.967; P <0.01)。我们注意到Lulc在水平影响WQI和TSI值的方式干扰了,因为在最接近城市密度的采样点,几乎没有河岸保护,水平衡与水质之间的相关性较低。在具有最低水盈余和赤字的站点中,水平衡与WQI之间存在正线性。然而,在季节剩余和水资源赤字录制的时候,没有线性。我们得出结论,水缺乏损害了地表水的质量。在极剩余的水季节中,WQI样品的均匀性较低,表明雨水和LULC之间的相互作用更高。本研究有助于设计水资源的策略,考虑到优化的气候季节性。

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