Published January 2013 | Version v1
Journal article

Uranium, radium and tritium groundwater monitoring at INFN-Gran Sasso National Laboratory, Italy

  • 1. National Institute of Nuclear Physics, Rome (Italy). Section of Roma Tre
  • 2. University of Roma Tre, Rome (Italy). Department of Physics
  • 3. National Institute of Nuclear Physics, Assergi (Italy). Gran Sasso National Laboratory
  • 4. Trieste University, Trieste (Italy). Department of Mathematics and Geosciences
  • 5. Comenius University, Bratislava (Slovakia). Department of Nuclear Physics and Biophysics

Description

Uranium groundwater anomalies, which were observed in cataclastic rocks crossing the underground Gran Sasso National Laboratory before the L'Aquila earthquake (April 6th, 2009), have been studied versus radium and tritium contents. The radionuclide analysis supports the role of endogenic fluid dynamics for uranium content in groundwater rather than percolation processes, due to meteoric events occurring above the water table of the Gran Sasso aquifer. The uranium anomalies represent a key geochemical signal of a progressive increase of deep fluids fluxes at middle-lower crustal levels associated with the geodynamics of the earthquake. Moreover, the uranium represents a more precise strain-meter than radon as its presence can be modulated during the preparation phase of the earthquake, and only successively released by microfracturing during the main shock and aftershocks. (author)

Additional details

Publishing Information

Journal Title
Journal of Radioanalytical and Nuclear Chemistry
Journal Volume
295
Journal Issue
1
Journal Page Range
p. 585-592
ISSN
0236-5731
CODEN
JRNCDM

Optional Information

Notes
44 refs.