AI Article Synopsis

  • The study investigates the role of deep carbonate groundwater as a key source for alluvial aquifers in the Lower Virgin River Basin, specifically in the Basin and Range Province of the Southwestern U.S.A.
  • Using stable isotopes (δH and δO) and hydrochemical data from various water sources, researchers found that about 50% of the groundwater in these alluvial aquifers comes from deep carbonate sources.
  • Chemical analysis revealed that rising deep groundwater influences the composition of basin-fill alluvial groundwaters, particularly outside the Virgin River floodplain, linking the characteristics of these waters to deeper flow systems.

Article Abstract

In the Basin and Range Province of the Southwestern U.S.A., deep carbonate groundwater has been suggested as a significant source to many overlying basin-fill alluvial aquifer systems. Notwithstanding, testing this hypothesis is limited by obtaining data from such considerable depths and complex geology. This study uses δH and δO data from springs, rivers, and wells tapping shallow basin-fill groundwater to test the hydrochemical interpretation of deep regional carbonate groundwater flow into the basin-fill aquifers. Stable isotopic and major ion attributes of hydrochemical facies suggest basin-fill alluvial groundwater of the Lower Virgin River Basin is a mixture of precipitation recharge within the Lower Virgin River Basin or the Clover and Escalante Desert Basin northwards, and the deep carbonate flow. The data support the conclusions that in the Lower Virgin River Basin, deep carbonate groundwater is an important source to the alluvial aquifer system and likely accounts for approximately 50% of the alluvial aquifer groundwater. Na, K, and SO increase in the basin-fill alluvial groundwaters outside the Virgin River floodplain appears to be related with upwelling of deep regional groundwater, and indicating that the chemical character of the basin-fill alluvial groundwaters are related to the deeper flow systems.

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Source
http://dx.doi.org/10.1080/10256016.2018.1444611DOI Listing

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