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Hydro-geochemical simulation for the evolution of groundwater quality in Yinchuan Plain, China

机译:银川平原地下水水质演化的水文地球化学模拟

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Water quality in the arid regions has long been an issue of great concern in the world. In this study, quantitative research was carried out to create new knowledge to understand the processes that determine the variation in the groundwater chemical composition of the Yinchuan Plain, China. In this context, the distribution and zonation characteristics of groundwater in this area were assessed using geochemical modelling of groundwater quality evolution. The results show the existence of an obvious zonation from the recharge area to the discharge area in the study area. Dominant anions transform from HCO3 in the inclined pluvial area to HCO3SO4Cl in the discharge region, while the main cations vary from Ca and Mg to Na and Mg. The simulation results indicate that the evaporation process triggers 2-35% of groundwater loss, leading to an increase in the total dissolved solids. The irrigation leakage mixes with the groundwater at about 8:2, suggesting that the irrigation leakage dilutes the groundwater.
机译:长期以来,干旱地区的水质一直是世界关注的问题。在这项研究中,进行了定量研究以创造新知识,以了解决定中国银川平原地下水化学组成变化的过程。在这种情况下,使用地下水质量演变的地球化学模型评估了该地区地下水的分布和分区特征。结果表明,研究区从补给区到出库区存在明显的分区带。主要的阴离子从倾斜的草丛区域的HCO3转变为放电区域的HCO3 SO 4 Cl ,而主要的阳离子从Ca和Mg到Na和Mg不等。模拟结果表明,蒸发过程触发了2-35%的地下水流失,导致总溶解固体增加。灌溉渗漏与地下水约在8:2混合,表明灌溉渗漏稀释了地下水。

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