Water is essential for life, the economy, and climate regulation, yet its scarcity is intensifying due to population growth, urbanization, and economic development. Water shortages are particularly remarkable in arid and semi-arid areas like the Mediterranean, where low rainfall and high evaporation severely limit water availability.
This is especially pronounced in arid and semi-arid regions like the Mediterranean, where low rainfall and high evaporation severely limit water availability. Southern Spain faces a serious water crisis due to decades of overexploitation of groundwater for agriculture, leading to a lower water table, saltwater intrusion in coastal aquifers, and ecosystem degradation, all of which are projected to worsen with climate change.
In this context, sustainable water management depends on a thorough understanding of hydrological systems and their responses to environmental changes. Lakes in semi-arid regions play a critical role as water resources for agriculture and industry and as wildlife habitats, yet little is known about their hydrological functioning, and quantitative approaches to evaluate their water balances and climate sensitivity are underutilized. The HydrO-17 project addresses this gap by using hydrochemical monitoring and innovative stable isotope geochemistry tools to study lake water balances and responses to climate change. Additionally, the project’s findings will support improved paleoclimate interpretations from sediment archives, informing water management strategies for long-term ecosystem health.