Sediment Properties Drive Spatial Variability of Potential Methane Production and Oxidation in Small Streams

被引:43
作者
Bodmer, P. [1 ]
Wilkinson, J. [1 ]
Lorke, A. [1 ]
机构
[1] Univ Koblenz Landau, Inst Environm Sci, Landau, Germany
关键词
DISSOLVED ORGANIC-MATTER; FINE SEDIMENT; FLUORESCENCE SPECTROSCOPY; CARBON-DIOXIDE; CLIMATE-CHANGE; EMISSIONS; RIVERS; CH4; METHANOGENESIS; HETEROGENEITY;
D O I
10.1029/2019JG005213
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Emissions of the potent greenhouse gas methane (CH4) from streams and rivers are a significant component of global freshwater methane emissions. The distribution of CH4 production and oxidation within stream sections and in vertical sediment profiles is not well understood, and the environmental controls on CH4 production and emission in such systems create a significant challenge for assessing larger-scale dynamics. Here we investigate factors driving the spatial variability of sediment potential methane production (PMP) and potential methane oxidation (PMO) in a temperate stream network in Germany. PMP was highly variable, ranging from 5 x 10(-4) to 28.58 mu g CH4 gDW(-1) d(-1) and PMO ranged from 0.43 mu g CH4 gDW(-1) d(-1) to 14.41 mu g CH4 gDW(-1) d(-1). Important drivers of spatial variability of PMP and PMO in the sediments of the stream main-stem were related to fine sediment fraction and organic carbon content. At smaller spatial scale, that is, in a sub-catchment stream section, the drivers were more complex and included sediment nitrogen and organic carbon content, as well as porewater dissolved organic carbon, dissolved organic matter quality, and metal concentrations. As with reservoirs and impounded rivers, fine sediment deposition and organic carbon content were found to be key controls on the spatial variability of CH4 production and oxidation. These findings enhance our understanding of CH4 dynamics, improve the potential for identifying CH4 production hotspots in small streams, and provide a potential means for upscaling emission rates in larger-scale assessments.
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页数:15
相关论文
共 80 条
[1]   Cross continental increase in methane ebullition under climate change [J].
Aben, Ralf C. H. ;
Barros, Nathan ;
van Donk, Ellen ;
Frenken, Thijs ;
Hilt, Sabine ;
Kazanjian, Garabet ;
Lamers, Leon P. M. ;
Peeters, Edwin T. H. M. ;
Roelofs, Jan G. M. ;
Domis, Lisette N. de Senerpont ;
Stephan, Susanne ;
Velthuis, Mandy ;
Van de Waal, Dedmer B. ;
Wik, Martin ;
Thornton, Brett F. ;
Wilkinson, Jeremy ;
DelSontro, Tonya ;
Kosten, Sarian .
NATURE COMMUNICATIONS, 2017, 8
[2]   The influence of catchment land use on stream integrity across multiple spatial scales [J].
Allan, JD ;
Erickson, DL ;
Fay, J .
FRESHWATER BIOLOGY, 1997, 37 (01) :149-161
[3]  
[Anonymous], 2013, Multi- and megavariate data analysis: basic principles and applications
[4]   Fates of methane from different lake habitats:: Connecting whole-lake budgets and CH4 emissions [J].
Bastviken, David ;
Cole, Jonathan J. ;
Pace, Michael L. ;
Van de Bogert, Matthew C. .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2008, 113 (G2)
[5]   Effect of weir impoundments on methane dynamics in a river [J].
Bednarik, Adam ;
Blaser, Martin ;
Matousu, Anna ;
Hekera, Petr ;
Rulik, Martin .
SCIENCE OF THE TOTAL ENVIRONMENT, 2017, 584 :164-174
[6]   Control Points in Ecosystems: Moving Beyond the Hot Spot Hot Moment Concept [J].
Bernhardt, Emily S. ;
Blaszczak, Joanna R. ;
Ficken, Cari D. ;
Fork, Megan L. ;
Kaiser, Kendra E. ;
Seybold, Erin C. .
ECOSYSTEMS, 2017, 20 (04) :665-682
[7]   THE QUANTITATIVE-DETERMINATION OF METHANE IN LAKE WATER [J].
BOSSARD, P ;
JOLLER, T ;
SZABO, E .
SCHWEIZERISCHE ZEITSCHRIFT FUR HYDROLOGIE-SWISS JOURNAL OF HYDROLOGY, 1981, 43 (01) :200-211
[8]   Methanogens and methanotrophs distribution in the hyporheic sediments of a small lowland stream [J].
Buriankova, Iva ;
Brablcova, Lenka ;
Mach, Vaclav ;
Hyblova, Aneta ;
Badurova, Pavlina ;
Cupalova, Jana ;
Cap, Lubomir ;
Rulik, Martin .
FUNDAMENTAL AND APPLIED LIMNOLOGY, 2012, 181 (02) :87-102
[9]   Bacterial community profiles from sediments of the Anacostia River using metabolic and molecular analyses [J].
Bushaw-Newton, Karen L. ;
Ewers, Evan C. ;
Velinsky, David J. ;
Ashley, Jeffrey T. F. ;
MacAvoy, Stephen E. .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2012, 19 (04) :1271-1279
[10]   Large fractionations of C and H isotopes related to methane oxidation in Arctic lakes [J].
Cadieux, Sarah B. ;
White, Jeffrey R. ;
Sauer, Peter E. ;
Peng, Yongbo ;
Goldman, Amy E. ;
Pratt, Lisa M. .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2016, 187 :141-155