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Methane in the hyporheic zone of a small lowland stream (Sitka, Czech Republic)
Authors:Martin Rulí  k, Lubomí  r     p,Eva Hlav     ov  
Affiliation:

1Department of Ecology, Hydrobiological Division, Faculty of Science, Palacky University, Olomouc, Czech Republic

2Department of Analytical Chemistry, Faculty of Science, Palacky University, Olomouc, Czech Republic

Abstract:Methane concentrations and selected chemical parameters in interstitial water were examined along subsurface flowpath in two subsystems (hyporheic and parafluvial sediments) in the Sitka stream, Czech Republic. Interstitial methane concentrations exhibited a distinct spatial pattern. In the hyporheic downwelling zone where the sediments are relatively well oxygenated due to high hydrologic exchange with the surface water, low interstitial methane concentrations, averaging 9.3 μg CH4/l, were found. In contrast, upwelling sediments and parafluvial sediments (active channel sediments lateral to the wetted channel) had significantly higher methane concentrations (p < 0.05, and p < 0.01, respectively), averaging 43.2 μg CH4/l and 160.5 μg CH4/l, respectively. Dissolved oxygen was the highest where surface water entered hyporheic/parafluvial sediments and decreased with water residence time in the sediments (p < 0.01). Nitrate concentrations decreased along the flowpath and were significantly lower at downstream end of the riffle (p < 0.001). Sulfate concentrations also show a slight decline with the water residence time, but differences were not significant. Effect of both nitrate and sulfate on methanogenesis is also discussed. The interstitial methane concentration significantly increased with surface water temperature (p < 0.001) and was negatively correlated with redox potential (p < 0.01) and dissolved oxygen (p < 0.05).
Keywords:Methane   interstitial water   hyporheic zone   anaerobic processes   stream   methanogenesis   denitrification   sulfate-reduction
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