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Observed in-plume gaseous elemental mercury depletion suggests significant mercury scavenging by volcanic aerosols

  • Alkuin M. Koenig
  • , Olivier Magand
  • , Clemence Rose
  • , Andrea Di Muro
  • , Yuzo Miyazaki
  • , Aurelie Colomb
  • , Matti Rissanen
  • , Christopher F. Lee
  • , Theodore K. Koenig
  • , Rainer Volkamer
  • , Jerome Brioude
  • , Bert Verreyken
  • , Tjarda Roberts
  • , Brock A. Edwards
  • , Karine Sellegri
  • , Santiago Arellano
  • , Philippe Kowalski
  • , Alessandro Aiuppa
  • , Jeroen E. Sonke
  • , Aurélien Dommergue

Tutkimustuotos: ArtikkeliTieteellinenvertaisarvioitu

5 Sitaatiot (Scopus)
8 Lataukset (Pure)

Abstrakti

Terrestrial volcanism is known to emit mercury (Hg) into the atmosphere. However, despite many years of investigation, its net impact on the atmospheric Hg budget remains insufficiently constrained, in part because the transformations of Hg in volcanic plumes as they age and mix with background air are poorly understood. Here we report the observation of complete gaseous elemental mercury (GEM) depletion events in dilute and moderately aged (∼3-7 hours) volcanic plumes from Piton de la Fournaise on Réunion Island. While it has been suggested that co-emitted bromine could, once photochemically activated, deplete GEM in a volcanic plume, we measured low bromine concentrations in both the gas- and particle-phase and observed complete GEM depletion even before sunrise, ruling out a leading role of bromine chemistry here. Instead, we hypothesize that the GEM depletions were mainly caused by gas-particle interactions with sulfate-rich volcanic particles (mostly of submicron size), abundantly present in the dilute plume. We consider heterogeneous GEM oxidation and GEM uptake by particles as plausible manifestations of such a process and derive empirical rate constants. By extrapolation, we estimate that volcanic aerosols may scavenge 210 Mg y−1 (67-480 Mg y−1) of Hg from the atmosphere globally, acting effectively as atmospheric mercury sink. While this estimate is subject to large uncertainties, it highlights that Hg transformations in aging volcanic plumes must be better understood to determine the net impact of volcanism on the atmospheric Hg budget and Hg deposition pathways.

AlkuperäiskieliEnglanti
Sivut1418-1438
Sivumäärä21
JulkaisuEnvironmental Science: Atmospheres
Vuosikerta3
Numero10
DOI - pysyväislinkit
TilaJulkaistu - 7 elok. 2023
OKM-julkaisutyyppiA1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä

Rahoitus

This publication is part of the GMOS-Train project that has received funding from the European Union's Horizon 2020 research and innovation program under the Marie Skłodowska-Curie grant agreement No. 860497. Support was received from the European Union's Horizon 2020 Research and Innovation programme (ACTRIS TNA; grant agreement no. 654109). The support from the Academy of Finland (331207) is appreciated. R. V. acknowledges funding from the US National Science Foundation (AGS-1620530, AGS-1951514). TJR acknowledges ANR PRC VOLC-HAL-CLIM ANR-18-CE01-0018. S. A acknowledges funding from the Swedish National Space Agency (Dnr. 149/18). Maïdo GEM data were collected via instruments coordinated by the IGE-PTICHA technical platform dedicated to atmospheric chemistry field instrumentation. The authors acknowledge the AERIS data infrastructure for providing access to the GEM data in this study. We acknowledge OPAR (Observatoire de Physique de l'Atmosphère à La Réunion), funded by CNRS-INSU and Université de La Réunion and managed by OSU-R (Observatoire des Sciences de l'Univers à La Réunion, UMS 3365). Jean-Marc Metzger, from OSU-R, and Christelle Barthe, from LACy and Meteo-France, are particularly acknowledged for their support in the implementation of OPAR's instrumentation, and the provision of meteorological data.

RahoittajatRahoittajan numero
National Science FoundationAGS-1951514, AGS-1620530
H2020 Marie Skłodowska-Curie Actions860497
Agence Nationale de la Recherche (ANR, France)
Swedish National Space Agency149/18
Academy of Finland331207
Institut national des sciences de l'Univers
Horizon 2020, EU654109

    Julkaisufoorumi-taso

    • Jufo-taso 1

    !!ASJC Scopus subject areas

    • Analytical Chemistry
    • Chemistry (miscellaneous)
    • Environmental Chemistry
    • Pollution

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