Ebullition dominates methane emissions in stratified coastal waters

被引:1
作者
Hermans, Martijn [1 ,2 ]
Stranne, Christian [1 ,3 ,4 ]
Broman, Elias [1 ,5 ]
Sokolov, Alexander [1 ]
Roth, Florian [1 ,6 ]
Nascimento, Francisco J. A. [1 ,5 ]
Morth, Carl -Magnus [3 ]
ten Hietbrink, Sophie [3 ,4 ]
Sun, Xiaole [1 ,7 ]
Gustafsson, Erik [1 ]
Gustafsson, Bo G. [1 ]
Norkko, Alf [1 ,6 ]
Jilbert, Tom [2 ]
Humborg, Christoph [1 ]
机构
[1] Stockholm Univ, Balt Sea Ctr, Stockholm, Sweden
[2] Univ Helsinki, Dept Geosci & Geog, Environm Geochem Grp, Fac Sci, Helsinki, Finland
[3] Stockholm Univ, Dept Geol Sci, Stockholm, Sweden
[4] Stockholm Univ, Bolin Ctr Climate Res, Stockholm, Sweden
[5] Stockholm Univ, Dept Ecol Environm & Plant Sci, Stockholm, Sweden
[6] Univ Helsinki, Tvarminne Zool Stn, Hango, Finland
[7] Chinese Acad Sci, Ctr Deep Sea Res, Inst Oceanol, Qingdao, Peoples R China
基金
瑞典研究理事会;
关键词
Methane; Greenhouse gas; Ebullition; Diffusive flux; Stratification; Carbon isotopes; CARBON; HYPOXIA; DEGRADATION; MARINE; MODEL;
D O I
10.1016/j.scitotenv.2024.174183
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Coastal areas are an important source of methane (CH4). However, the exact origins of CH4 in the surface waters of coastal regions, which in turn drive sea-air emissions, remain uncertain. To gain a comprehensive understanding of the current and future climate change feedbacks, it is crucial to identify these CH4 sources and processes that regulate its formation and oxidation. This study investigated coastal CH4 dynamics by comparing water column data from six stations located in the brackish Tva<spacing diaeresis>rminne Archipelago, Baltic Sea. The sediment biogeochemistry and microbiology were further investigated at two stations (i.e., nearshore and offshore). These stations differed in terms of stratification, bottom water redox conditions, and organic matter loading. At the nearshore station, CH4 diffusion from the sediment into the water column was negligible, because nearly all CH4 was oxidized within the upper sediment column before reaching the sediment surface. On the other hand, at the offshore station, there was significant benthic diffusion of CH4, albeit the majority underwent oxidation before reaching the sediment -water interface, due to shoaling of the sulfate methane transition zone (SMTZ). The po- tential contribution of CH 4 production in the water column was evaluated , was found to be negligible. After examining the isotopic signatures of 6 13 C-CH 4 across the sediment and water column, it became apparent that the surface water 6 13 C-CH 4 values observed in areas with thermal stratification could not be explained by diffusion, advective fluxes, nor production in the water column. In fact, these values bore a remarkable resemblance to those detected below the SMTZ. This supports the hypothesis that the source of CH 4 in surface waters is more likely to originate from ebullition than diffusion in stratified brackish coastal systems.
引用
收藏
页数:12
相关论文
共 50 条
[41]   Global anthropogenic methane emissions [J].
Scheehle, EA ;
Irving, WN ;
Kruger, D .
NON-C02 GREENHOUSE GASES: SCIENTIFIC UNDERSTANDING, CONTROL OPTIONS AND POLICY ASPECTS, 2002, :257-262
[42]   Response to concerns and uncertainties relating to methane emissions synthesis for vegetated coastal ecosystems [J].
Al-Haj, Alia N. ;
Fulweiler, Robinson W. .
GLOBAL CHANGE BIOLOGY, 2020, 26 (10) :E10-E11
[43]   Vertical transport of sediment-associated metals and cyanobacteria by ebullition in a stratified lake [J].
Delwiche, Kyle ;
Gu, Junyao ;
Hemond, Harold ;
Preheim, Sarah P. .
BIOGEOSCIENCES, 2020, 17 (12) :3135-3147
[44]   Constraining spatial variability of methane ebullition seeps in thermokarst lakes using point process models [J].
Anthony, Katey M. Walter ;
Anthony, Peter .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2013, 118 (03) :1015-1034
[45]   Self-Made Equipment for Automatic Methane Diffusion and Ebullition Measurements From Aquatic Environments [J].
So, Jonas Stage ;
Sand-Jensen, Kaj ;
Kragh, Theis .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2024, 129 (06)
[46]   Widespread dominance of methane ebullition over diffusion in freshwater aquaculture ponds [J].
Vroom, Renske J. E. ;
Kosten, Sarian ;
Almeida, Rafael M. ;
Mendonca, Raquel ;
Muzitano, Ive S. ;
Barbosa, Icaro ;
Nasario, Jonas ;
Oliveira Junior, Ernandes S. ;
Flecker, Alexander S. ;
Barros, Nathan .
FRONTIERS IN WATER, 2023, 5
[47]   Methane Emissions from Subtropical and Tropical Mangrove Ecosystems in Taiwan [J].
Lin, Chiao-Wen ;
Kao, Yu-Chen ;
Chou, Meng-Chun ;
Wu, Hsin-Hsun ;
Ho, Chuan-Wen ;
Lin, Hsing-Juh .
FORESTS, 2020, 11 (04)
[48]   Long-Term Measurements of Methane Ebullition From Thaw Ponds [J].
Burke, S. A. ;
Wik, M. ;
Lang, A. ;
Contosta, A. R. ;
Palace, M. ;
Crill, M. ;
Varner, R. K. .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2019, 124 (07) :2208-2221
[49]   Controls on methane released through ebullition in peatlands affected by permafrost degradation [J].
Klapstein, Sara J. ;
Turetsky, Merritt R. ;
McGuire, A. David ;
Harden, Jennifer W. ;
Czimczik, Claudia I. ;
Xu, Xiaomei ;
Chanton, Jeffrey P. ;
Waddington, James M. .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2014, 119 (03) :418-431
[50]   Global change and eutrophication of coastal waters [J].
Rabalais, Nancy N. ;
Turner, R. Eugene ;
Diaz, Robert J. ;
Justic, Dubravko .
ICES JOURNAL OF MARINE SCIENCE, 2009, 66 (07) :1528-1537