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  • Articles  (2)
  • Aquifer vulnerability, landuse impact, validation of index, coastal aquifer management, GIS  (1)
  • Gas hazard  (1)
  • 1
    Publication Date: 2018-04-05
    Description: Vulcano, the southernmost island of the Aeolian archipelago (Italy), is presently characterized by active fumarolic fields located along the rim of La Fossa cone and the shoreline of the Baia di Levante beach, in the northern portion of the island.The Baia di Levante fumarolic vents are fed by a shallow hydrothermal aquifer heated by magmatic gases rising from the deep down, with a spatial distribution strongly affected by the local fracture network. These fractures are the expression of a deformation field, dominated by a northward motion to Lipari, abruptly decaying to the Vulcanello peninsula, immediately northward of the Baia di Levante beach. Variable rates of fluid transfer to the surface, following permeability changes affecting the fracture network are among the results of stress field variations over time which induce fluctuations in the pressure state of the hydrothermal system. Under these conditions, increments in hydrothermal gas flow, able to cause an increase of gas hazard, could be determined by a rearrangement of the shallow permeability distribution induced by changes in the deformation field. In this case not associated to any variation in the volcanic activity state. Since 2009 an huge gas flow increment has been noticed in some undersea vents of the Baia di Levante area, leading to increase of gas hazard in their immediate surroundings. On the contrary, the acquired data from the INGV volcanic surveillance program didn’t suggest any correlated increase of the magmatic fluid component in the degassing activity.In July 2015, we carried out multi-parametric geochemical surveys in this area, based on direct (thermocouple) and indirect (thermal infrared camera and pyrometer) soil temperature, soil CO2 flux, atmospheric concentration of CO2 and H2S measurements at low elevation (one meter a.s.l.). The chemical and isotopic composition of low temperature fumarole gases was determined too.The comparison of the new data with previous surveys carried out in the same area, and the general information from the INGV monitoring program exclude a possible renewal of volcanic activity as the source for the observed anomalies.The most reliable cause for the observed localized gas flow anomalies should therefore be referred to a rearrangement of the local shallow permeability field driven by geodynamic stress variations. The differential subsidence rate acting in the Baia di Levante area, as resulting from the geodetic data from literature, could be accounted as the engine able to close and open fractures, modifying the permeability distribution and, finally, conveying major amount of gases in restricted areas where an increased gas hazard is observed.
    Description: Published
    Description: Vienna, Austria
    Description: 4V. Dinamica dei processi pre-eruttivi
    Description: 6V. Pericolosità vulcanica e contributi alla stima del rischio
    Description: 2SR. VULCANI - Servizi e ricerca per la Società
    Keywords: Carbon dioxide ; Hydrogen sulfide ; Hydrothermal release ; Gas hazard ; 04.08. Volcanology
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: Conference paper
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  • 2
    Publication Date: 2023-03-02
    Description: he present research aims to assess the role of geogenic and anthropogenic activities in coastal aquifer vulnerability using a modified index. To achieve the objective of the current research, a GIS-based GALDIT-NUTS index has been developed for aquifer vulnerability assessment on Favignana Island, Italy. The GALDIT-NUTS index has been developed by expanding the GALDIT index using three significant parameters of the DRASTIC index and adding the landuse of the area. The GALDITS-NUTS index and the different index weights were validated using a hierarchical analytical process, vulnerability rating (obtained by this application), and field observed aquifer electrical conductivity data. The GALDIT-NUTS showed that approximately 66% of the study area was covered with high to maximum vulnerability zones and followed by medium vulnerability zones (32% of the study area). The present research outcome suggested that the GALDIT-NUTS index helps assess Island aquifer vulnerability because the index considers both human and seawater intrusion impacts.
    Description: Published
    Description: 11706-11731
    Description: 6A. Geochimica per l'ambiente e geologia medica
    Description: 1TR. Georisorse
    Description: JCR Journal
    Keywords: Aquifer vulnerability, landuse impact, validation of index, coastal aquifer management, GIS
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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