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  5. Evaluation of tectonically enhanced radon in fault zones by quantification of the radon activity index
 
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Evaluation of tectonically enhanced radon in fault zones by quantification of the radon activity index

Author(s)
Benà, Eleonora  
Ciotoli, Giancarlo  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma2, Roma, Italia  
Ruggiero, Livio  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia  
Coletti, Chiara  
Bossew, Peter  
Massironi, Matteo  
Mazzoli, Claudio  
Mair, Volkmar  
Morelli, Corrado  
Galgaro, Antonio  
Morozzi, Pietro  
Tositti, Laura  
Sassi, Raffaele  
Language
English
Obiettivo Specifico
6A. Geochimica per l'ambiente e geologia medica
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Scientific Reports  
Issue/vol(year)
/12 (2022)
ISSN
2045-2322
Publisher
Nature PG
Pages (printed)
21586
Date Issued
December 14, 2022
DOI
10.1038/s41598-022-26124-y
URI
https://www.earth-prints.org/handle/2122/16319
Subjects

Radon

Soil Gas

Geochemistry

Radon Hazard

Abstract
This work highlights the importance of the Geogenic Radon Potential (GRP) component originated by degassing processes in fault zones. This Tectonically Enhanced Radon (TER) can increase radon concentration in soil gas and the inflow of radon in the buildings (Indoor Radon Concentrations, IRC). Although tectonically related radon enhancement is known in areas characterised by active faults, few studies have investigated radon migration processes in non-active fault zones. The Pusteria Valley (Bolzano, north-eastern Italy) represents an ideal geological setting to study the role of a non-seismic fault system in enhancing the geogenic radon. Here, most of the municipalities are characterised by high IRC. We performed soil gas surveys in three of these municipalities located along a wide section of the non-seismic Pusteria fault system characterised by a dense network of faults and fractures. Results highlight the presence of high Rn concentrations (up to 800 kBq·m-3) with anisotropic spatial patterns oriented along the main strike of the fault system. We calculated a Radon Activity Index (RAI) along north-south profiles across the Pusteria fault system and found that TER is linked to high fault geochemical activities. This evidence confirms that TER constitutes a significant component of GRP also along non-seismic faults.
Type
article
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Evaluation_of_tectonically_enhanced_radon_in_fault.pdf

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Open Access published article
Size

2.68 MB

Format

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Checksum (MD5)

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