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Using isotope data to characterize and date groundwater in the southern sector of the Guarani Aquifer System

机译:使用同位素数据在瓜拉尼含水层南部部门的表征和日期地下水

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The Guarani Aquifer System (SAG) is the largest transboundary aquifer in Latin America, extending beneath parts of Brazil, Paraguay, Argentina, and Uruguay. This paper presents the results of recent hydrogeological studies in the southern portion of the SAG. Locally, the abundance of surface water bodies precluded the use of conventional hydrological tools to characterize groundwater flows. Geological, hydrochemical and environmental isotope investigations were integrated to postulate a revised hydrogeological conceptual model. The revised geological model has provided a better definition of the geometry of the aquifer units and outlined the relevance of regional faults in controlling flow patterns. The new potentiometric map is consistent with groundwater flow from the SAG outcrops to the centre of the Corrientes Province, where upwards flows were identified. Hydrochemical and isotope data confirmed the widespread occurrence of mixing. Noble gas isotopes dissolved in groundwater (He-4 and(81)Kr/Kr) provided residence times ranging from recent recharge up to 770 +/- 130 ka. Groundwater age modelling confirmed the role of the geological structures in controlling groundwater flow. The southern sector of the SAG is a multilayer aquifer system with vertical flows and deep regional discharge near the Esteros del Ibera wetland area and along the Parana and Uruguay rivers.
机译:瓜拉尼含水层系统(SAG)是拉丁美洲最大的越境含水层,在巴西,巴拉圭,阿根廷和乌拉圭的地下延伸。本文介绍了南部落下的南部近期水文地质研究的结果。在本地,表面水体的丰度阻止了使用常规水文工具来表征地下水流动。地质,水化学和环境同位素调查综合,以假设修订后的水文地质概念模型。修订后的地质模型提供了更好的定义含水层单元的几何形状,并概述了区域断层控制流动模式的相关性。新电位图与来自SAG露头的地下水流向腐蚀省的中心,识别向上流动。水化学和同位素数据证实了混合的广泛发生。溶解在地下水中的惰性气体同位素(HE-4和(81)KR / KR)提供了从最近的补给到770 +/-130 Ka的停留时间。地下水时代建模证实了地质结构在控制地下水流动中的作用。 SAG的南部部门是一个多层含水层系统,具有垂直流动和伊斯塔洛伊贝拉湿地区附近的垂直流动和深层区域放电,沿着Parana和乌拉圭河。

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