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Assessing the origin and processes controlling groundwater salinization in coastal aquifers through integrated hydrochemical, isotopic and hydrogeochemical modelling techniques

机译:通过整合水化,同位素和水文地理学建模技术评估控制沿海含水层地下水盐渍化的起源和过程

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The origin of groundwater and the processes controlling its chemical composition in complex coastal aquifers are of interest, as about 44% of the world's population lives in coastal areas. Groundwater over-exploitation in the highly urbanized coastal regions has exerted pressure on these aquifers, leading to seawater intrusion. This study aimed to identify (1) the complex relationship between natural and anthropogenic factors, and (2) the hydrogeochemical processes controlling the groundwater chemistry in an over-stressed coastal aquifer of southern India. The results indicate an increase in the extent of seawater intrusion from 4 km in 1969 to 17 km in 2014. Major hydrogeochemical processes controlling the aquifers are evaporation, ion exchange and dissolution of aluminosilicates, gypsum, halites and calcites. The integrated use of field investigation with hydrochemical, isotopic and hydrogeochemical modelling techniques allowed a conceptual model of the groundwater salinization process over 46 years to be developed as a basis for designing sustainable management measures.
机译:地下水的起源和控制其化学成分在复杂的沿海含水层中的过程非常感兴趣,大约44%的世界人口在沿海地区生活。高城市化沿海地区的地下水过度开采在这些含水层上施加了压力,导致海水入侵。本研究旨在鉴定(1)天然和人为因素之间的复杂关系,以及(2)水文地代理过程控制印度南部过度应激沿海含水层的地下水化学。结果表明,2014年1969年4公里的海水入侵程度增加到17公里。控制含水层的主要水水电方法是蒸发,离子交换和铝硅酸盐,石膏,卤素和钙化岩的溶解。综合使用现场调查与水化学,同位素和水文地质建模技术允许在46年内进行地下水盐渍化过程的概念模型,成为设计可持续管理措施的基础。

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