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The effects of water column dissolved oxygen concentrations on lake methane emissions: results from a whole-lake oxygenation experiment
Department of Thematic Studies—Environmental Change, Linköping University, Linköping, Sweden.
Department of Thematic Studies—Environmental Change, Linköping University, Linköping, Sweden.
Department of Thematic Studies—Environmental Change, Linköping University, Linköping, Sweden.
Department of Thematic Studies—Environmental Change, Linköping University, Linköping, Sweden.
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2023 (English)In: Journal of Geophysical Research - Biogeosciences, ISSN 2169-8953, E-ISSN 2169-8961, Vol. 128, no 11, article id e2022JG007185Article in journal (Refereed) Published
Abstract [en]

Lakes contribute 9%–19% of global methane (CH4) emissions to the atmosphere. Dissolved molecular oxygen (DO) in lakes can inhibit the production of CH4 and promote CH4 oxidation. DO is therefore often considered an important regulator of CH4 emissions from lakes. Presence or absence of DO in the water above the sediments can affect CH4 production and emissions by (a) influencing if methane production can be fueled by the most reactive organic matter in the top sediment layer or rely on deeper and less degradable organic matter, and (b) enabling CH4 accumulation in deep waters and potentially large emissions upon water column turnover. However, the relative importance of these two DO effects on CH4 fluxes is still unclear. We assessed CH4 fluxes from two connected lake basins in northern boreal Sweden where one was experimentally oxygenated. Results showed no clear difference in summer CH4 emissions attributable to water column DO concentrations. Large amounts of CH4 accumulated in the anoxic hypolimnion of the reference basin but little of this may have been emitted because of incomplete mixing, and effective methane oxidation of stored CH4 reaching oxic water layers. Accordingly, ≤24% of the stored CH4 was likely emitted in the experimental lake. Overall, our results suggest that hypolimnetic DO and water column CH4 storage might have a smaller impact on CH4 emissions in boreal forest lakes than previous estimates, yet potential fluxes associated with water column turnover events remain a significant uncertainty in lake CH4 emission estimates.

Place, publisher, year, edition, pages
American Geophysical Union (AGU), 2023. Vol. 128, no 11, article id e2022JG007185
Keywords [en]
dissolved oxygen, emissions, methane, methane oxidation, storage
National Category
Environmental Sciences
Identifiers
URN: urn:nbn:se:umu:diva-216650DOI: 10.1029/2022JG007185ISI: 001096659600001Scopus ID: 2-s2.0-85175626815OAI: oai:DiVA.org:umu-216650DiVA, id: diva2:1815412
Funder
EU, Horizon 2020, 725546Knut and Alice Wallenberg Foundation, 2016.0083Swedish Research Council, 2016-04829Swedish Research Council Formas, 2018-01794Available from: 2023-11-28 Created: 2023-11-28 Last updated: 2023-11-28Bibliographically approved

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Seekell, David A.Karlsson, Jan

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