Sediment Respiration Pulses in Intermittent Rivers and Ephemeral Streams
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AGU Advancing Earth and Space Science
Abstract
Intermittent rivers and ephemeral streams (IRES) may represent over half the global stream
network, but their contribution to respiration and carbon dioxide (CO2) emissions is largely
undetermined. In particular, little is known about the variability and drivers of respiration in IRES
sediments upon rewetting, which could result in large pulses of CO2. We present a global study
examining sediments from 200 dry IRES reaches spanning multiple biomes. Results from standardized
assays show that mean respiration increased 32‐fold to 66‐fold upon sediment rewetting. Structural
equation modeling indicates that this response was driven by sediment texture and organic matter
quantity and quality, which, in turn, were influenced by climate, land use, and riparian plant cover. Our
estimates suggest that respiration pulses resulting from rewetting of IRES sediments could contribute
significantly to annual CO2 emissions from the global stream network, with a single respiration pulse
potentially increasing emission by 0.2–0.7%. As the spatial and temporal extent of IRES increases
globally, our results highlight the importance of recognizing the influence of wetting‐drying cycles on
respiration and CO2 emissions in stream networks.
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Citation
von Schiller, D., Datry, T., Corti, R.,
Foulquier, A., Tockner, K., Marcé, R.,
et al. (2019). Sediment respiration
pulses in intermittent rivers and
ephemeral streams. Global
Biogeochemical Cycles, 33