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April 12, 2026Hydrology0 citationsOpen Access

The Contribution of Natural Isotopes in Understanding Groundwater Circulation: Case Studies in Carbonate Aquifers of Central Apennines

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AGAlessia Di GiovanniSRSergio Rusi

Key Points

  • The aim is to improve the understanding of groundwater circulation and recharge sources in carbonate aquifers using isotopic analyses.
  • Investigated three carbonate aquifers in Central Italy
  • Conducted isotopic analyses and field surveys
  • Examined spring sources and discharge gains along the Pescara River
  • Identified common recharge sectors for Germina and Capolaia springs
  • Confirmed recharge from central–southern massif in Morrone aquifer
  • Highlighted Lake Scanno's crucial role in Villalago springs' recharge

Abstract

Groundwater quantification is essential for sustainable water resources management, yet it is often hampered by limited data availability and difficulties in measuring spring discharges. This study investigates three carbonate aquifers in Central Italy’s Abruzzo region: the Genzana–Greco, Morrone, and Marsicano mountains. The aim is to resolve uncertainties in spring attribution, and groundwater flow patterns using isotopic analyses combined with field surveys. The Genzana–Greco aquifer was examined to clarify the sources of the Acquachiara spring and the previously unreported Germina spring, assessing whether recharge occurs locally or from the carbonate massif. In this case, the results indicate that the Germina, together with a similar known spring of Capolaia, share a common recharge sector, while the Acquachiara spring is mainly fed by higher-elevation carbonate areas, excluding significant contributions from local alluvial deposits. In the Morrone mountain aquifer, discharge gains along the Pescara River through the Gole di Popoli were quantified, and spring isotopic compositions were compared to the main basal spring Giardino to better define groundwater contributions. In this case study, the stable isotopes and tritium data confirm recharge from the central–southern massif and support the identification of basal springs and Pescara River gains as primary discharge points, with minimal influence from surface water. For the Marsicano mountain aquifer, the role of Lake Scanno in feeding the Villalago springs was investigated through isotopic analysis of inflows, downstream springs, and basal aquifer discharge points to constrain the hydrogeological water budget. The results highlight Lake Scanno’s role in the recharge of Villalago springs and delineate the Cavuto group as a major discharge system receiving inputs from central and northern sectors of the massif. Overall, the integration of isotopic tracers with hydrological measurements allowed a more precise characterization of aquifer recharge areas, Mean Residence Times, and groundwater flow paths, improving the understanding of regional water resources in a complex carbonate setting.

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Cite This Study

Giovanni et al. (2026) studied this question.

synapsesocial.com/papers/69db37f94fe01fead37c6256https://doi.org/10.3390/hydrology13040109
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