globalchange  > 气候变化事实与影响
DOI: 10.1002/2016GB005378
Scopus记录号: 2-s2.0-85011002369
论文题名:
Organic matter remineralization in marine sediments: A Pan-Arctic synthesis
作者: Bourgeois S; , Archambault P; , Witte U
刊名: Global Biogeochemical Cycles
ISSN: 8866236
出版年: 2017
卷: 31, 期:1
起始页码: 190
结束页码: 213
语种: 英语
英文关键词: food supply ; nutrient fluxes ; polar region ; sediment oxygen demand ; water depth
Scopus关键词: benthos ; climate change ; continental shelf ; database ; dissolved oxygen ; ecosystem function ; food supply ; interpolation ; marine sediment ; nutrient cycling ; organic matter ; polar region ; remineralization ; respiration ; seasonal variation ; soft-bottom environment ; water depth ; Arctic ; Arctic Ocean ; Canada ; Mackenzie River [Northwest Territories] ; Northwest Territories
英文摘要: Climate change in the Arctic is ongoing and causes drastic modification on the ecosystem functioning. In soft-bottom environments, organic matter remineralization is considered an important ecosystem function. Here we provide a large-scale assessment of the current knowledge on the benthic organic matter remineralization and its potential response to climate change. Sediment oxygen demand (SOD) values (n = 1154), measured throughout the Arctic, were gathered from 30 publications and 16 databases, and nutrient flux values, available in a far lesser extent (n < 80), were also compiled. Generalized additive models were used to estimate the influence of explanatory variables on benthic oxygen fluxes and for interpolating SOD to the whole Arctic region. This first Pan-Arctic review of the distributions of SOD showed that oxygen fluxes strongly depended on water depth, i.e., followed the general trend observed for other regions, and also on the availability of labile organic matter. The continental shelves (representing ~50% of Arctic Ocean's total area) were characterized by the highest SOD values (10.5 � 7.9 mmol O2 m−2 d−1), and differences among shelves were observed; SOD values in inflow, interior, and outflow shelves were 11.8 � 8.0, 6.2 � 5.6, and 3.9 � 3.5 mmol O2 m−2 d−1, respectively. Moreover, seasonal variation in SOD changed significantly among areas. The interpolation based on the best fitted model showed high respiration in the inflow and interior shelves. In the inflow shelves, characterized by productive waters, benthic activities replenish bottom water with nutrients which may augment primary productivity, whereas sediments from the interior shelves, e.g., under the direct influence of the Mackenzie River, consume nutrients. �2017. The Authors.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/77784
Appears in Collections:气候变化事实与影响

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作者单位: Oceanlab, School of Biological Sciences, University of Aberdeen, Newburgh, United Kingdom; Institut des Sciences de la Mer de Rimouski, Universit� du Qu�bec � Rimouski, Rimouski, QC, Canada; Hopkins Marine Station, Stanford University, Pacific Grove, CA, United States; Now at Qu�bec-Ocean, D�partement de biologie, Universit� de Laval, Quebec, QC, Canada

Recommended Citation:
Bourgeois S,, Archambault P,, Witte U. Organic matter remineralization in marine sediments: A Pan-Arctic synthesis[J]. Global Biogeochemical Cycles,2017-01-01,31(1)
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