Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications

The strontium isotopic ratio (expressed as 87Sr/86Sr) of groundwater represents a useful method for studying and understanding the groundwater circulations, also, the U and Ra isotopic compositions can vary as function of the groundwater residence time. This paper reports an evaluation of the pr...

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Main Authors: Maurizio Barbieri, Angela Nigro, Mario Voltaggio
Format: Article
Language:English
Published: Eleven Senses 2014-06-01
Series:Senses and Sciences
Subjects:
Online Access:http://www.sensesandsciences.com/#!sr-isotopes-and-u-series-radionuclides-i/c1yhu
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spelling doaj-c3e9110970cf4762840719087f7807632020-11-25T01:25:38ZengEleven SensesSenses and Sciences2284-24892014-06-0112515510.14616/sands-2014-2-5155Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implicationsMaurizio Barbieri0Angela Nigro1Mario Voltaggio2Department of Earth Science, Sapienza University of RomeDepartment of Earth Science, Sapienza University of RomeNational Research Council, Institute of Environmental Geology and Geoengineering, RomeThe strontium isotopic ratio (expressed as 87Sr/86Sr) of groundwater represents a useful method for studying and understanding the groundwater circulations, also, the U and Ra isotopic compositions can vary as function of the groundwater residence time. This paper reports an evaluation of the probable recharge area of the Sangemini mineral water springs (Terni-Umbria Central Italy) and an estimate of the residence time of the aquifer by coupling Sr and U series isotopic systematics. For this study have been analyzed four water sample for the isotope ratio of 87Sr/86Sr, and eleven samples, shallow waters and groundwaters, for U and Ra, furthermore were determined the values of isotopic ratio for sample of typical rocks of the area. The results of this study allow to identify: a recharge area in a restricted sector of the Meso-Cenozoic carbonates a longer and more effective water/rock interaction in the Quaternary series. U and Ra recoil models allow to estimate a groundwater residence time of about 350 years and a total water volume whose value (64*106 m3) agrees with the limited extension of the aquifer. The extension of the aquifer was constrained by comparing Sr isotopic composition of waters and local geological formations. Groundwaters seem mainly to circulate in clayey sandy Quaternary series characterized by low redox conditions. http://www.sensesandsciences.com/#!sr-isotopes-and-u-series-radionuclides-i/c1yhuStrountium isotopesUranium radionuclidesgroundwater ciculationresidence time
collection DOAJ
language English
format Article
sources DOAJ
author Maurizio Barbieri
Angela Nigro
Mario Voltaggio
spellingShingle Maurizio Barbieri
Angela Nigro
Mario Voltaggio
Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
Senses and Sciences
Strountium isotopes
Uranium radionuclides
groundwater ciculation
residence time
author_facet Maurizio Barbieri
Angela Nigro
Mario Voltaggio
author_sort Maurizio Barbieri
title Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
title_short Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
title_full Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
title_fullStr Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
title_full_unstemmed Sr isotopes and U series radionuclides in the Sangemini area (Central Italy): Hydrogeology implications
title_sort sr isotopes and u series radionuclides in the sangemini area (central italy): hydrogeology implications
publisher Eleven Senses
series Senses and Sciences
issn 2284-2489
publishDate 2014-06-01
description The strontium isotopic ratio (expressed as 87Sr/86Sr) of groundwater represents a useful method for studying and understanding the groundwater circulations, also, the U and Ra isotopic compositions can vary as function of the groundwater residence time. This paper reports an evaluation of the probable recharge area of the Sangemini mineral water springs (Terni-Umbria Central Italy) and an estimate of the residence time of the aquifer by coupling Sr and U series isotopic systematics. For this study have been analyzed four water sample for the isotope ratio of 87Sr/86Sr, and eleven samples, shallow waters and groundwaters, for U and Ra, furthermore were determined the values of isotopic ratio for sample of typical rocks of the area. The results of this study allow to identify: a recharge area in a restricted sector of the Meso-Cenozoic carbonates a longer and more effective water/rock interaction in the Quaternary series. U and Ra recoil models allow to estimate a groundwater residence time of about 350 years and a total water volume whose value (64*106 m3) agrees with the limited extension of the aquifer. The extension of the aquifer was constrained by comparing Sr isotopic composition of waters and local geological formations. Groundwaters seem mainly to circulate in clayey sandy Quaternary series characterized by low redox conditions.
topic Strountium isotopes
Uranium radionuclides
groundwater ciculation
residence time
url http://www.sensesandsciences.com/#!sr-isotopes-and-u-series-radionuclides-i/c1yhu
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