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Detailed Reference Information |
Kellner, E., Waddington, J.M. and Price, J.S. (2005). Dynamics of biogenic gas bubbles in peat: Potential effects on water storage and peat deformation. Water Resources Research 41: doi: 10.1029/2004WR003732. issn: 0043-1397. |
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Dynamics of biogenic bubbles in peat soils were studied at a field site in southern Qu¿bec, Canada. The maximum gas content measured in this study varied spatially with a maximum seasonal increase in volumetric gas content of 0.15. The size of changes in total gas content of a 1 m deep profile was comparable to the seasonal water storage change. Changes in bubble volume in the saturated zone alter the water table level and, consequently, the water content in the unsaturated zone and the apparent water budget. In highly compressible soils (and floating root mats), buoyancy forces from bubbles also cause relations between the surface and the water table to change. These effects cannot be omitted in modeling the hydrology of peatlands. Our results indicate a great spatial variability of trapped bubbles. Using pressure transducers sealed to the surface, we found pressure deviations indicating small areas closed off by bubbles clogging the pores. The hydrological influence of these areas may be considerable as they may restrict or deflect water flows. Open pipe piezometers did not show these pressure deviations, possibly because the closed zones were too small to influence the head in pipes or because of less amount of gas close to the pipe screen. |
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BACKGROUND DATA FILES |
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Abstract |
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Keywords
Biogeosciences, Biogeochemical cycles, processes, and modeling (0412, 0793, 1615, 4805, 4912), Hydrology, Groundwater hydrology, Hydrology, Water budgets, Hydrology, Wetlands, methane, gas bubbles, peatland, buoyancy, compression |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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