Strong Subseasonal Variability of Oxic Methane Production Challenges Methane Budgeting in Freshwater Lakes

Détails

ID Serval
serval:BIB_1A304F3F65CC
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Strong Subseasonal Variability of Oxic Methane Production Challenges Methane Budgeting in Freshwater Lakes
Périodique
Environmental Science & Technology
Auteur⸱e⸱s
Liu Liu, Zhang Xin, Schorn Sina, Doda Tomy, Kang Manchun, Bouffard Damien, Kirillin Georgiy, Milucka Jana, Shi Xiaotao, Grossart Hans-Peter
ISSN
0013-936X
1520-5851
ISSN-L
0013-936X
Statut éditorial
In Press
Peer-reviewed
Oui
Langue
anglais
Résumé
Methane (CH <sub>4</sub> ) accumulation in the well-oxygenated lake epilimnion enhances the diffusive atmospheric CH <sub>4</sub> emission. Both lateral transport and in situ oxic methane production (OMP) have been suggested as potential sources. While the latter has been recently supported by increasing evidence, quantifying the exact contribution of OMP to atmospheric emissions remains challenging. Based on a large high-resolution field data set collected during 2019-2020 in the deep stratified Lake Stechlin and on three-dimensional hydrodynamic modeling, we improved existing CH <sub>4</sub> budgets by resolving each component of the mass balance model at a seasonal scale and therefore better constrained the residual OMP. All terms in our model showed a large temporal variability at scales from intraday to seasonal, and the modeled OMP was most sensitive to the surface CH <sub>4</sub> flux estimates. Future efforts are needed to reduce the uncertainties in estimating OMP rates using the mass balance approach by increasing the frequency of atmospheric CH <sub>4</sub> flux measurements.
Mots-clé
Carbon cycling, Greenhouse gases, Methane paradox, Physical transport, Hydrodynamic model, Freshwater lakes
Pubmed
Création de la notice
28/10/2024 15:23
Dernière modification de la notice
01/11/2024 14:02
Données d'usage