Sulfide Toxicity as Key Control on Anaerobic Oxidation of Methane in Eutrophic Coastal Sediments

Publication date

2024-07-02

Authors

Dalcin Martins, Paula
de Monlevad, João P.R.C.
Echeveste Medrano, Maider J.
Lenstra, Wytze KlaasISNI 0000000492798709
Wallenius, Anna Julia
Hermans, MartijnISNI 0000000506011701
Slomp, C.P.ISNI 0000000353313441
Welte, Cornelia Ulrike
Jetten, Mike S.M.
van Helmond, Niels A. G. M.ISNI 0000000419542360

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Coastal zones account for 75% of marine methane emissions, despite covering only 15% of the ocean surface area. In these ecosystems, the tight balance between methane production and oxidation in sediments prevents most methane from escaping into seawater. However, anthropogenic activities could disrupt this balance, leading to an increased methane escape from coastal sediments. To quantify and unravel potential mechanisms underlying this disruption, we used a suite of biogeochemical and microbiological analyses to investigate the impact of anthropogenically induced redox shifts on methane cycling in sediments from three sites with contrasting bottom water redox conditions (oxic-hypoxic-euxinic) in the eutrophic Stockholm Archipelago. Our results indicate that the methane production potential increased under hypoxia and euxinia, while anaerobic oxidation of methane was disrupted under euxinia. Experimental, genomic, and biogeochemical data suggest that the virtual disappearance of methane-oxidizing archaea at the euxinic site occurred due to sulfide toxicity. This could explain a near 7-fold increase in the extent of escape of benthic methane at the euxinic site relative to the hypoxic one. In conclusion, these insights reveal how the development of euxinia could disrupt the coastal methane biofilter, potentially leading to increased methane emissions from coastal zones.

Keywords

anaerobic oxidation of methane, coastal sediments, eutrophication, euxinia, General Chemistry, Environmental Chemistry, SDG 14 - Life Below Water

Citation

Dalcin Martins, P, de Monlevad, J P R C, Echeveste Medrano, M J, Lenstra, W K, Wallenius, A J, Hermans, M, Slomp, C P, Welte, C U, Jetten, M S M & van Helmond, N A G M 2024, 'Sulfide Toxicity as Key Control on Anaerobic Oxidation of Methane in Eutrophic Coastal Sediments', Environmental Science and Technology, vol. 58, no. 26, pp. 11421-11435. https://doi.org/10.1021/acs.est.3c10418