Two airborne remote-sensing flights were conducted above a geothermal field in central Italy (the Latera caldera) where deep, naturally produced C02 is migrating to surface along faults and leaking to the atmosphere at spatially restricted gas vents. The goal of these surveys was to understand if it is possible to locate C02 leaking from a C02 geological storage site through the application of indirect remote-sensing methods that primarily measure plant stress and subsequent ground-based verification using near-surface gas geochemistry techniques. The overall success rate obtained by integrating six different datasets was 39%, although some individual techniques, such as one NDVI survey, achieved a 47% success rate. While the work did discover some vents that were previously unknown, it also failed to locate five vents that are known to exist and, perhaps, other unknown vents. Future work will focus on understanding the various causes of false positives, automation of preliminary data interpretation, and the direct hyperspectral measurement of atmospheric C02 produced by these natural seeps. (c) 2008 Elsevier Ltd. All rights reserved.

The application of remote-sensing techniques to monitor CO2-storage sites for surface leakage: Method development and testing at Latera (Italy) where naturally produced CO2 is leaking to the atmosphere / L., Bateson; M., Vellico; Beaubien, Stanley Eugene; J. M., Pearce; Annunziatellis, Aldo; Ciotoli, Giancarlo; F., Coren; Lombardi, Salvatore; S., Marsh. - In: INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL. - ISSN 1750-5836. - STAMPA. - 2:3(2008), pp. 388-400. (Intervento presentato al convegno General Assembly of the European-Geosciences-Union tenutosi a Vienna, AUSTRIA nel APR 15-20, 2007) [10.1016/j.ijggc.2007.12.005].

The application of remote-sensing techniques to monitor CO2-storage sites for surface leakage: Method development and testing at Latera (Italy) where naturally produced CO2 is leaking to the atmosphere

BEAUBIEN, Stanley Eugene;ANNUNZIATELLIS, Aldo;CIOTOLI, Giancarlo;LOMBARDI, Salvatore;
2008

Abstract

Two airborne remote-sensing flights were conducted above a geothermal field in central Italy (the Latera caldera) where deep, naturally produced C02 is migrating to surface along faults and leaking to the atmosphere at spatially restricted gas vents. The goal of these surveys was to understand if it is possible to locate C02 leaking from a C02 geological storage site through the application of indirect remote-sensing methods that primarily measure plant stress and subsequent ground-based verification using near-surface gas geochemistry techniques. The overall success rate obtained by integrating six different datasets was 39%, although some individual techniques, such as one NDVI survey, achieved a 47% success rate. While the work did discover some vents that were previously unknown, it also failed to locate five vents that are known to exist and, perhaps, other unknown vents. Future work will focus on understanding the various causes of false positives, automation of preliminary data interpretation, and the direct hyperspectral measurement of atmospheric C02 produced by these natural seeps. (c) 2008 Elsevier Ltd. All rights reserved.
2008
co2 geological storage; gas geochemistry verification; leakage monitoring; natural analogue; remote sensing
01 Pubblicazione su rivista::01a Articolo in rivista
The application of remote-sensing techniques to monitor CO2-storage sites for surface leakage: Method development and testing at Latera (Italy) where naturally produced CO2 is leaking to the atmosphere / L., Bateson; M., Vellico; Beaubien, Stanley Eugene; J. M., Pearce; Annunziatellis, Aldo; Ciotoli, Giancarlo; F., Coren; Lombardi, Salvatore; S., Marsh. - In: INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL. - ISSN 1750-5836. - STAMPA. - 2:3(2008), pp. 388-400. (Intervento presentato al convegno General Assembly of the European-Geosciences-Union tenutosi a Vienna, AUSTRIA nel APR 15-20, 2007) [10.1016/j.ijggc.2007.12.005].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/363628
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