Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence
<p>A periodic sampling of the groundwaters and dissolved and free gases in selected deep wells located in the area affected by the May-June 2012 southern Po Valley seismic sequence has provided insight into seismogenic-induced changes of the local aquifer systems. The results obtained show pro...
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doaj-8f09db61ba944e0f91215ffeaf3599632020-11-25T01:05:36ZengIstituto Nazionale di Geofisica e Vulcanologia (INGV)Annals of Geophysics1593-52132037-416X2012-10-0155410.4401/ag-61515800Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequenceFrancesco Italiano0Marcello Liotta1Mauro Martelli2Giovanni Martinelli3Riccardo Petrini4Anna Riggio5Andrea Luca Rizzo6Francesca Slejko7Barbara Stenni8Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Palermo, PalermoIstituto Nazionale di Geofisica e Vulcanologia, Sezione di Palermo, PalermoIstituto Nazionale di Geofisica e Vulcanologia, Sezione di Palermo, PalermoUniversità di Trieste, Dipartimento di Matematica e Geoscienze (DMG), TriesteAgenzia Regionale Prevenzione e Ambiente (ARPA) dell'Emilia Romagna, Sezione di Reggio Emilia, Reggio EmiliaIstituto Nazionale Oceanografia e Geofisica Sperimentale (OGS), Sgonico (Trieste)Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Palermo, PalermoAgenzia Regionale Prevenzione e Ambiente (ARPA) dell'Emilia Romagna, Sezione di Reggio Emilia, Reggio EmiliaAgenzia Regionale Prevenzione e Ambiente (ARPA) dell'Emilia Romagna, Sezione di Reggio Emilia, Reggio Emilia<p>A periodic sampling of the groundwaters and dissolved and free gases in selected deep wells located in the area affected by the May-June 2012 southern Po Valley seismic sequence has provided insight into seismogenic-induced changes of the local aquifer systems. The results obtained show progressive changes in the fluid geochemistry, allowing it to be established that deep-seated fluids were mobilized during the seismic sequence and reached surface layers along faults and fractures, which generated significant geochemical anomalies. The May-June 2012 seismic swarm (mainshock on May 29, 2012, M 5.8; 7 shocks M >5, about 200 events 3 > M > 5) induced several modifications in the circulating fluids. This study reports the preliminary results obtained for the geochemical features of the waters and gases collected over the epicentral area from boreholes drilled at different depths, thus intercepting water and gases with different origins and circulation. The aim of the investigations was to improve our knowledge of the fluids circulating over the seismic area (e.g. origin, provenance, interactions, mixing of different components, temporal changes). This was achieved by collecting samples from both shallow and deep-drilled boreholes, and then, after the selection of the relevant sites, we looked for temporal changes with mid-to-long-term monitoring activity following a constant sampling rate. This allowed us to gain better insight into the relationships between the fluid circulation and the faulting activity. The sampling sites are listed in Table 1, along with the analytical results of the gas phase. […]</p>http://www.annalsofgeophysics.eu/index.php/annals/article/view/6151FluidsGeochemistryFaultsTemporal changes |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Francesco Italiano Marcello Liotta Mauro Martelli Giovanni Martinelli Riccardo Petrini Anna Riggio Andrea Luca Rizzo Francesca Slejko Barbara Stenni |
spellingShingle |
Francesco Italiano Marcello Liotta Mauro Martelli Giovanni Martinelli Riccardo Petrini Anna Riggio Andrea Luca Rizzo Francesca Slejko Barbara Stenni Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence Annals of Geophysics Fluids Geochemistry Faults Temporal changes |
author_facet |
Francesco Italiano Marcello Liotta Mauro Martelli Giovanni Martinelli Riccardo Petrini Anna Riggio Andrea Luca Rizzo Francesca Slejko Barbara Stenni |
author_sort |
Francesco Italiano |
title |
Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence |
title_short |
Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence |
title_full |
Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence |
title_fullStr |
Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence |
title_full_unstemmed |
Geochemical features and effects on deep-seated fluids during the May-June 2012 southern Po Valley seismic sequence |
title_sort |
geochemical features and effects on deep-seated fluids during the may-june 2012 southern po valley seismic sequence |
publisher |
Istituto Nazionale di Geofisica e Vulcanologia (INGV) |
series |
Annals of Geophysics |
issn |
1593-5213 2037-416X |
publishDate |
2012-10-01 |
description |
<p>A periodic sampling of the groundwaters and dissolved and free gases in selected deep wells located in the area affected by the May-June 2012 southern Po Valley seismic sequence has provided insight into seismogenic-induced changes of the local aquifer systems. The results obtained show progressive changes in the fluid geochemistry, allowing it to be established that deep-seated fluids were mobilized during the seismic sequence and reached surface layers along faults and fractures, which generated significant geochemical anomalies. The May-June 2012 seismic swarm (mainshock on May 29, 2012, M 5.8; 7 shocks M >5, about 200 events 3 > M > 5) induced several modifications in the circulating fluids. This study reports the preliminary results obtained for the geochemical features of the waters and gases collected over the epicentral area from boreholes drilled at different depths, thus intercepting water and gases with different origins and circulation. The aim of the investigations was to improve our knowledge of the fluids circulating over the seismic area (e.g. origin, provenance, interactions, mixing of different components, temporal changes). This was achieved by collecting samples from both shallow and deep-drilled boreholes, and then, after the selection of the relevant sites, we looked for temporal changes with mid-to-long-term monitoring activity following a constant sampling rate. This allowed us to gain better insight into the relationships between the fluid circulation and the faulting activity. The sampling sites are listed in Table 1, along with the analytical results of the gas phase. […]</p> |
topic |
Fluids Geochemistry Faults Temporal changes |
url |
http://www.annalsofgeophysics.eu/index.php/annals/article/view/6151 |
work_keys_str_mv |
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