Publications des scientifiques de l'IRD

Bouchet S., Tessier E., Masbou J., Point David, Lazzaro Xavier, Monperrus M., Guédron Stéphane, Acha D., Amouroux D. (2022). In situ photochemical transformation of Hg species and associated isotopic fractionation in the water column of high-altitude lakes from the Bolivian Altiplano. Environmental Science and Technology, 56 (4), p. 2258-2268. ISSN 0013-936X.

Titre du document
In situ photochemical transformation of Hg species and associated isotopic fractionation in the water column of high-altitude lakes from the Bolivian Altiplano
Année de publication
2022
Type de document
Article référencé dans le Web of Science WOS:000763099700018
Auteurs
Bouchet S., Tessier E., Masbou J., Point David, Lazzaro Xavier, Monperrus M., Guédron Stéphane, Acha D., Amouroux D.
Source
Environmental Science and Technology, 2022, 56 (4), p. 2258-2268 ISSN 0013-936X
Photochemical reactions are major pathways for the removal of Hg species from aquatic ecosystems, lowering the concentration of monomethylmercury (MMHg) and its bioaccumulation in foodwebs. Here, we investigated the rates and environmental drivers of MMHg photodegradation and inorganic Hg (IHg) photoreduction in waters of two high-altitude lakes from the Bolivian Altiplano representing meso- to eutrophic conditions. We incubated three contrasting waters in situ at two depths after adding Hg-enriched isotopic species to derive rate constants. We found that transformations mostly occurred in subsurface waters exposed to UV radiation and were mainly modulated by the dissolved organic matter (DOM) level. In parallel, we incubated the same waters after the addition of low concentrations of natural MMHg and followed the stable isotope composition of the remaining Hg species by compound-specific isotope analysis allowing the determination of enrichment factors and mass-independent fractionation (MIF) slopes (Delta Hg-199/Delta Hg-201) during in situ MMHg photodegradation in natural waters. We found that MIF enrichment factors potentially range from -11 to -19% and average -14.3 +/- 0.6% (1 SE). The MIF slope diverged depending on the DOM level, ranging from 1.24 +/- 0.03 to 1.34 +/- 0.02 for the low and high DOM waters, respectively, and matched the MMHg MIF slope recorded in fish from the same lake. Our in situ results thus reveal (i) a relatively similar extent of Hg isotopic fractionation during MMHg photodegradation among contrasted natural waters and compared to previous laboratory experiments and (ii) that the MMHg MIF recorded in fish is characteristic for the MMHg bonding environment. They will enable a better assessment of the extent and conditions conducive to MMHg photodegradation in aquatic ecosystems.
Plan de classement
Limnologie physique / Océanographie physique [032] ; Ecologie, systèmes aquatiques [036]
Description Géographique
BOLIVIE ; ANDES
Localisation
Fonds IRD [F B010084653]
Identifiant IRD
fdi:010084653
Contact