6533b7d2fe1ef96bd125f690
RESEARCH PRODUCT
Mercury gas emissions from La Soufrière Volcano, Guadeloupe Island (Lesser Antilles)
Francesco ParelloSergio CalabreseGilbert HammouyaEmanuela Rita BagnatoAlessandro AiuppaPatrick Allardsubject
geographygeography.geographical_feature_categoryAndesitevolcanic plumeMineralogychemistry.chemical_elementGeologyMercuryParticulatesfumaroleAtmospheric sciencestrace metalFumaroleSettore GEO/08 - Geochimica E VulcanologiaPlumeMercury (element)Impact craterVolcanochemistryGeochemistry and Petrologyemission rate.gaseous and particulate mercuryChemical compositionGeologydescription
Abstract Quantifying mercury (Hg) emissions from active volcanoes is of particular interest for better constraining the global cycle and environmental impact of this highly toxic element. Here we report on the abundance of total gaseous (TGM = Hg 0 (g) + Hg II (g) ) and particulate (Hg (p) ) mercury in the summit gas emissions of La Soufriere andesitic volcano (Guadeloupe island, Lesser Antilles), where enhanced degassing of mixed hydrothermal-magmatic volatiles has been occurring since 1992 from the Southern summit crater. We demonstrate that Hg in volcanic plume occurs predominantly as gaseous mercury, with a mean TGM/Hg (p) mass ratio of ~ 63. Combining the mean TGM/H 2 S mass ratio of the volcanic plume (~ 3.2 × 10 − 6 ), measured close to the source vent, with the H 2 S plume flux (~ 0.7 t d − 1 ), determined simultaneously, allows us to estimate a gaseous mercury emission rate of 0.8 kg yr − 1 from La Soufriere summit dome. Somewhat lower TGM/S tot mass ratio in fumarolic gases from the source vent (4.4 × 10 − 7 ) suggests that plume chemical composition is not well represented by the emission source (fumaroles) due to chemical processes prior to (or upon) discharge. Current mercury emission from La Soufriere volcano represents a very small contribution to the estimated global volcanic budget for this element.
year | journal | country | edition | language |
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2009-08-01 | Chemical Geology |