Persistent net release of carbon dioxide and methane from an Alaskan lowland boreal peatland complex

被引:7
|
作者
Euskirchen, Eugenie S. [1 ,2 ]
Edgar, Colin W. [1 ]
Kane, Evan S. [3 ,4 ]
Waldrop, Mark P. [5 ]
Neumann, Rebecca B. [6 ]
Manies, Kristen L. [5 ]
Douglas, Thomas A. [7 ]
Dieleman, Catherine [8 ]
Jones, Miriam C. [9 ]
Turetsky, Merritt R. [10 ]
机构
[1] Univ Alaska, Inst Arctic Biol, Fairbanks, AK 99775 USA
[2] Univ Alaska, Dept Biol & Wildlife, Fairbanks, AK USA
[3] Michigan Technol Univ, Coll Forest Resources & Environm Sci, Houghton, MI USA
[4] USDA Forest Serv, Northern Res Stn, Houghton, MI USA
[5] US Geol Survey, Geol Minerals Energy & Geophys Sci Ctr, Mountain View, CA USA
[6] Univ Washington, Dept Civil & Environm Engn, Seattle, WA USA
[7] US Army, Cold Reg Res & Engn Lab, Fairbanks, AK USA
[8] Univ Guelph, Dept Integrat Biol, Guelph, ON, Canada
[9] US Geol Survey, Florence Bascom Geosci Ctr, Reston, VA USA
[10] Univ Colorado, Inst Arctic & Alpine Res, Dept Ecol & Evolutionary Biol, Boulder, CO 80309 USA
基金
美国国家科学基金会;
关键词
boreal lowland ecosystems; carbon cycling; Interior Alaska; methane emissions; net ecosystem exchange; precipitation; thawing permafrost; FREQUENCY-RESPONSE CORRECTIONS; BLACK SPRUCE FOREST; PERMAFROST THAW; CLIMATE-CHANGE; INTERANNUAL VARIABILITY; ECOSYSTEM EXCHANGE; RICH FEN; NORTHERN; FLUXES; TEMPERATURE;
D O I
10.1111/gcb.17139
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Permafrost degradation in peatlands is altering vegetation and soil properties and impacting net carbon storage. We studied four adjacent sites in Alaska with varied permafrost regimes, including a black spruce forest on a peat plateau with permafrost, two collapse scar bogs of different ages formed following thermokarst, and a rich fen without permafrost. Measurements included year-round eddy covariance estimates of net carbon dioxide (CO2), mid-April to October methane (CH4) emissions, and environmental variables. From 2011 to 2022, annual rainfall was above the historical average, snow water equivalent increased, and snow-season duration shortened due to later snow return. Seasonally thawed active layer depths also increased. During this period, all ecosystems acted as slight annual sources of CO2 (13-59 g C m(-2) year(-1)) and stronger sources of CH4 (11-14 g CH4 m(-2) from similar to April to October). The interannual variability of net ecosystem exchange was high, approximately +/- 100 g C m(-2) year(-1), or twice what has been previously reported across other boreal sites. Net CO2 release was positively related to increased summer rainfall and winter snow water equivalent and later snow return. Controls over CH4 emissions were related to increased soil moisture and inundation status. The dominant emitter of carbon was the rich fen, which, in addition to being a source of CO2, was also the largest CH4 emitter. These results suggest that the future carbon-source strength of boreal lowlands in Interior Alaska may be determined by the area occupied by minerotrophic fens, which are expected to become more abundant as permafrost thaw increases hydrologic connectivity. Since our measurements occur within close proximity of each other (<= 1 km(2)), this study also has implications for the spatial scale and data used in benchmarking carbon cycle models and emphasizes the necessity of long-term measurements to identify carbon cycle process changes in a warming climate.
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页数:24
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