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Relationship between soil CO2 flux and volcanic tremor at Mt. Etna: Implications for magma dynamics

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Abstract

Large variations of the CO2 flux through the soil were observed between November 2002 and January 2006 at Mt. Etna volcano. In many cases, the CO2 flux was strongly influenced by changes in air temperature and atmospheric pressure. A new filtering method was then developed to remove the atmospheric influences on soil CO2 flux and, at the same time, to highlight the variations strictly related to volcanic activity. Successively, the CO2 corrected data were quantitatively compared with the spectral amplitude of the volcanic tremor by cross correlation function, cross-wavelet spectrum and wavelet coherence. These analyses suggested that the soil CO2 flux variations preceded those of volcanic tremor by about 50 days. Given that volcanic tremor is linked to the shallow (a few kilometer) magma dynamics and soil CO2 flux related to the deeper (~12 km b.s.l.) magma dynamics, the “delayed similarity” between the CO2 flux and the volcanic tremor amplitude was used to assess the average speed in the magma uprising into the crust, as about 170–260 m per day. Finally, the large amount of CO2 released before the onset of the 2004–2005 eruption indicated a deep ingression of new magma, which might have triggered such an eruption.

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References

  • Allard P (1997) Endogenous magma degassing and storage at Mt. Etna. Geophys Res Lett 24:2219–2222

    Article  Google Scholar 

  • Allard P, Carbonelle J, Dajlevic D, Le Bronec J, Morel P, Robe MC, Maurenas JM, Faivre-Pierret R, Martin D, Sabroux JC, Zettwoog P (1991) Eruptive and diffuse emissions of CO2 from Mt. Etna. Nature 351:387–391

    Article  Google Scholar 

  • Alparone S, Behncke B, Giammanco S, Neri M, Privitera E (2005) Paroxysmal summit activity at Mt. Etna (Italy) monitored through continuous soil radon measurements. Geophys Res Lett 32:L16307. doi:10.1029/2005GL023352

    Article  Google Scholar 

  • Alparone S, Cannata A, Gresta S (2007) Time variation of spectral, wavefield features of volcanic tremor at Mt. Etna (January–June 1999). J Volcanol Geotherm Res 161:318–332

    Article  Google Scholar 

  • Brandsdóttir B, Einarsson P (1992) Volcanic tremor and low-frequency earthquakes in Iceland. In: Gasparini P, Scarpa R, Aki K (eds) Volcanic seismology. IAVCEI, Australia, pp 212–222

    Google Scholar 

  • Bruno N, Caltabiano T, Giammanco S, Romano R (2001) Degassing of SO2 and CO2 at Mount Etna (Sicily) as an indicator of pre-eruptive ascent and shallow emplacement of magma. J Volcanol Geotherm Res 110:137–153

    Article  Google Scholar 

  • Burton M, Neri M, Andronico D, Branca S, Caltabiano T, Calvari S, Corsaro RA, Del Carlo P, Lanzafame G, Lodato L, Miraglia L, Salerno G, Spampinato L (2005) Etna 2004–2005: an archetype for geodynamically-controlled effusive eruptions. Geophys Res Lett 32:L09303. doi:10.1029/2005GL022527

    Article  Google Scholar 

  • Camarda M, Gurrieri S, Valenza M (2006a) In situ permeability measurements based on a radial gas advection model: relationships between soil permeability and diffuse CO2 degassing in volcanic areas. Pure Appl Geophys 163:897–914

    Article  Google Scholar 

  • Camarda M, Gurrieri, S, Valenza M (2006b) CO2 flux measurements in volcanic areas using the dynamic concentration method: influence of soil permeability. J Geophys Res 111. doi:10.1029/2005JB003898

  • Cannata A, Catania A, Alparone S, Gresta S (2008) Volcanic tremor at Mt. Etna: inferences on magma dynamics during effusive and explosive activity. J Volcanol Geotherm Res 178:19–31

    Article  Google Scholar 

  • Caracausi A, Italiano F, Paonita A, Rizzo A (2003) Evidence of deep magma degassing and ascent by geochemistry of peripheral gas emissions at Mount Etna (Italy): assessment of the magmatic reservoir pressure. J Geophys Res 108:2463. doi:10.1029/2002JB002095

    Article  Google Scholar 

  • Chouet BA (1996) Long-period volcano seismicity: its source and use in eruption forecasting. Nature 380:309–316

    Article  Google Scholar 

  • Corsaro RA, Miraglia L (2005) Attività di monitoraggio petrologico Etna—I semestre 2005, INGV, Catania. http://www.ct.ingv.it/Report/RPTVGPTR20050712.pdf (in Italian)

  • Di Grazia G, Falsaperla S, Langer H (2006) Volcanic tremor location during the 2004 Mount Etna lava effusion. Geophys Res Lett 33:L04304. doi:10.1029/2005GL025177

    Article  Google Scholar 

  • Efron B (1982) The jackknife, the bootstrap and other resampling plans. Soc Ind Appl Math, Philadelphia

    Google Scholar 

  • Ferrazzini V, Aki K (1992) Preliminary results from a field experiment on volcanic events at Kilauea using an array of digital seismographs. In: Gasparini P, Scarpa R, Aki K (eds) Volcanic Seismology. IAVCEI, Australia, pp 168–189

    Google Scholar 

  • Foufoula-Georgiou E, Kumar P (1995) Wavelets in Geophysics. Academic Press, Dublin

    Google Scholar 

  • Giammanco S, Gurrieri S, Valenza M (1995) Soil CO2 degassing on Mt. Etna (Sicily) during the period 1989–1993: discrimination between climatic and volcanic influences. Bull Volcanol 57:52–60

    Google Scholar 

  • Gresta S, Imposa S, Patanè D, Patanè G (1987) Volcanic tremor at Mt. Etna: state of the art and perspectives. Pure Appl Geophys 125:1079–1095

    Article  Google Scholar 

  • Gresta S, Montalto A, Patanè G (1991) Volcanic tremor at Mount Etna (January 1984–March 1985): its relationship to the eruptive activity and modeling of the summit feeding system. Bull Volcanol 53:309–320

    Article  Google Scholar 

  • Grinsted A, Moore JC, Jevrejeva S (2004) Application of the cross wavelet transform and wavelet coherence to geophysical time series. Nonlinear Process Geophys 11:561–566

    Article  Google Scholar 

  • Hinkle M (1990) Factors affecting concentrations of helium and carbon dioxide in soil gases. In: Durrance EM et al (eds) Geochemistry of gaseous elements and compounds. Theophrastus, Athens, pp 421–448

    Google Scholar 

  • Jevrejeva S, Moore JC, Grinsted A (2003) Influence of the Arctic Oscillation and El Nino-Southern Oscillation (ENSO) on ice conditions in the Baltic Sea: the wavelet approach. J Geophys Res 108(D21):4677. doi:10.1029/2003JD003417

    Google Scholar 

  • Kubotera A (1974) Volcanic tremors at Aso volcano. In: Civetta L, Gasparini P, Luongo G, Rapolla A (eds) Physical volcanology. Elsevier, Amsterdam, pp 29–47

    Google Scholar 

  • Leonardi S, Gresta S, Mulargia F (2000) Searching for a significant correlation between volcanic tremor amplitude and SO2 emissions at Mount Etna volcano, Sicily. Geophys J Int 141:832–834

    Article  Google Scholar 

  • McNutt SR (1986) Observations and analysis of B-type earthquakes, explosions and volcanic tremor at Pavlof volcano, Alaska. Bull Seismol Soc Am 76:153–175

    Google Scholar 

  • McNutt SR (1994) Volcanic tremor from around the world: 1992 update. Acta Vulcanol 5:197–200

    Google Scholar 

  • Morrisey MM, Chouet B (2001) Trends in long-period seismicity related to magmatic fluid compositions. J Volcanol Geotherm Res 108:265–281

    Article  Google Scholar 

  • Pan V, Holloway JR, Hervig RL (1991) The pressure and temperature dependence of carbon dioxide solubility in tholeiitic basalt melts. Geochim Cosmochim Acta 55:1587–1595

    Article  Google Scholar 

  • Patanè D, Di Grazia G, Cannata A, Montalto P, Boschi E (2008) The shallow magma pathway geometry at Mt. Etna volcano. Geochem Geophys Geosyst 9:Q12021. doi:1029/2008GC002131

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Acknowledgments

We acknowledge two anonymous reviewers for their constructive comments that enabled us to improve the manuscript. Crosswavelet and wavelet coherence software were kindly provided by A. Grinsted. This research has been supported by grants INGV-DPC 2005-2007 (Project V3_6, RUs 17 and 18).

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Correspondence to Andrea Cannata.

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Cannata, A., Giudice, G., Gurrieri, S. et al. Relationship between soil CO2 flux and volcanic tremor at Mt. Etna: Implications for magma dynamics. Environ Earth Sci 61, 477–489 (2010). https://doi.org/10.1007/s12665-009-0359-z

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